
Compostos de organossilícico
In questa sezione troverai un gran numero di composti organosiliconici. I composti organosiliconici sono caratterizzati da atomi di carbonio legati ad atomi di silicio. Possono essere presenti anche altri composti non metallici. Questi composti sono ampiamente utilizzati nella sintesi organica, nella scienza dei materiali e nei prodotti farmaceutici grazie alle loro proprietà chimiche uniche. Presso CymitQuimica, offriamo una vasta gamma di composti organosiliconici di alta qualità per supportare le tue ricerche e progetti industriali.
Subcategorias de "Compostos de organossilícico"
Foram encontrados 4327 produtos de "Compostos de organossilícico"
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N-Benzyl-2,4,6-triphenyl pyridinium tetrafluoroborate
CAS:<p>N-Benzyl-2,4,6-triphenyl pyridinium tetrafluoroborate is a molecule that regulates transcriptional activity. It can be used to isolate regulatory genes from different organisms and identify the specific genes that regulate the expression of other genes. The algorithm for this process is a stepwise, stereoselective, aerobic search. This process starts with an algorithm that identifies the best possible match between the gene sequence and the database sequences. The algorithm then transfers to another stepwise and stereoselective search of the database until it finds a match. The process ends when there are no more matches in the database or when all possible combinations have been searched. N-Benzyl-2,4,6-triphenyl pyridinium tetrafluoroborate has been shown to activate Staphylococcus aureus at very low concentrations but does not cause activation of mammalian cells at these concentrations.</p>Fórmula:C30H24N·BF4Pureza:Min. 95%Peso molecular:485.32 g/molTriphenylborane
CAS:<p>Triphenylborane is a chemical compound with the formula B(C6H5)3. It is a white solid that is soluble in organic solvents, but not water. Triphenylborane reacts with phosphorus pentoxide to form diphenyl sulfoxide, and it also reacts with nitrogen gas to form diphenyl diazonium salts. Triphenylborane has been shown to be nontoxic when administered orally at doses up to 100 mg/kg in rats and mice, although it has acute toxicities when injected into rabbits and dogs. The chemical stability of triphenylborane makes it an ideal candidate for use as a high-temperature fuel additive.</p>Fórmula:C18H15BPureza:Min. 95%Cor e Forma:PowderPeso molecular:242.12 g/mol6-(4,4,5,5-Tetramethyl-1,3,2-dioxaborolan-2-yl)imidazo[1,2-α]pyridine
CAS:<p>6-(4,4,5,5-Tetramethyl-1,3,2-dioxaborolan-2-yl)imidazo[1,2-a]pyridine is a fine chemical that can be used as a building block in organic synthesis. It is a useful reagent and intermediate for the synthesis of other compounds. 6-(4,4,5,5-Tetramethyl-1,3,2-dioxaborolan-2-yl)imidazo[1,2-a]pyridine is soluble in acetone and ethanol. The compound has been found to be an effective reaction component in the synthesis of various complex molecules.</p>Fórmula:C13H17BN2O2Pureza:Min. 95%Cor e Forma:SolidPeso molecular:244.1 g/mol2,3-Dichlorophenylboronic acid
CAS:<p>2,3-Dichlorophenylboronic acid is a boron-containing compound. It is a substrate for the enzyme phosphatase and has been shown to inhibit the activity of the SHP2 protein kinase in vitro. This inhibition can lead to programmed cell death via apoptosis and necrosis. 2,3-Dichlorophenylboronic acid has also been shown to inhibit the growth of erythromycin resistant bacteria. The two isomers are not equally active. Dichloro(phenyl)boronic acid (1) is more potent than dichlorobis(phenyl)boronic acid (2).</p>Fórmula:C6H5BCl2O2Pureza:Min. 97.5 Area-%Cor e Forma:White PowderPeso molecular:190.82 g/mol3,7-Dibromo-5,5-dioctyl-5H-dibenzo[b,d]silole
CAS:<p>3,7-Dibromo-5,5-dioctyl-5H-dibenzo[b,d]silole is a fine chemical that belongs to the group of versatile building blocks for organic synthesis. It is a complex compound that has been used in research as a reagent and speciality chemical. It also has many applications in the production of commercial chemicals such as pharmaceuticals and agrochemicals. This compound can be used as an intermediate for the production of other compounds with pharmaceutical or agricultural uses.</p>Fórmula:C28H40Br2SiPureza:Min. 95%Cor e Forma:Colorless PowderPeso molecular:564.51 g/mol4-(4,6-Dimethoxy-1,3,5-triazin-2-yl)-4-morpholinium tetrafluoroborate
CAS:<p>4-(4,6-Dimethoxy-1,3,5-triazin-2-yl)-4-morpholinium tetrafluoroborate is a modulating agent that is used in the treatment of infectious and metabolic disorders. The compound has been shown to increase the activity of fatty acid oxidation and decrease the production of inflammatory mediators. 4-(4,6-Dimethoxy-1,3,5-triazin-2-yl)-4-morpholinium tetrafluoroborate interacts with a variety of proteins by binding to their Nterminal domains. It can be conjugated to other molecules and then used as probes for kinetic studies or as antiinflammatory compounds.</p>Fórmula:C10H17N4O3•BF4Pureza:Min. 97 Area-%Cor e Forma:PowderPeso molecular:328.07 g/molCyclopentadienyldicarbonyl(tetrahydrofuran)iron(II) tetrafluoroborate
CAS:<p>Cyclopentadienyldicarbonyl(tetrahydrofuran)iron(II) tetrafluoroborate is a chemical that is used as a building block in research and speciality chemical synthesis. The compound has been shown to be versatile, with many possible reactions, including the formation of a complex. This compound can also be used as an intermediate for another chemical or as a scaffold for other compounds. Cyclopentadienyldicarbonyl(tetrahydrofuran)iron(II) tetrafluoroborate is a high quality reagent that can be used in reaction processes with low toxicity.</p>Fórmula:C11H13FeO3•BF4Pureza:Min. 95%Cor e Forma:SolidPeso molecular:335.87 g/mol2-(4-(AzidoMethyl)phenyl)-4,4,5,5-tetraMethyl-1,3,2-dioxaborolane
CAS:<p>2-(4-(AzidoMethyl)phenyl)-4,4,5,5-tetraMethyl-1,3,2-dioxaborolane is a high quality reagent that is useful for complex compound synthesis. It has CAS No. 1239481-05-0 and has been shown to be a useful intermediate in many reactions. 2-(4-(AzidoMethyl)phenyl)-4,4,5,5-tetraMethyl-1,3,2-dioxaborolane is also a fine chemical that can be used as a research chemical or as a building block for speciality chemicals. This compound has shown to be versatile because it can react with nucleophiles and electrophiles to produce diverse products.</p>Fórmula:C13H19BN3O2Pureza:Min. 95%Peso molecular:260.12 g/molN-α-Fmoc-N-ε-4-methyltrityl-L-lysine
CAS:<p>N-alpha-Fmoc-Nepsilon-methyltrityl-L-lysine is a synthetic amino acid that is used in the industrial production of peptides. It has been used for the synthesis of polypeptides, which are made up of chains of amino acids, and to analyze uptake in urine samples. The uptake was tracked by using a trifluoroacetic acid analog to radiolabel the N-alpha-Fmoc-Nepsilon-methyltrityl-L-lysine. This analog was synthesized from histidine and butyric acid, and its carboxy terminal sequence was determined by solid phase synthesis. N-alpha-Fmoc-Nepsilon methyltrityl L Lysine binds to the receptor site on cells that is responsible for binding histidine residues on proteins.</p>Fórmula:C41H40N2O4Pureza:Min. 95%Cor e Forma:White To Off-White SolidPeso molecular:624.77 g/molNα-Z-Nε-Boc-D-lysine methyl ester
CAS:<p>Please enquire for more information about Nα-Z-Nε-Boc-D-lysine methyl ester including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Fórmula:C20H30N2O6Pureza:Min. 95%Cor e Forma:PowderPeso molecular:394.46 g/mol4-Fluorophenylboronic acid
CAS:<p>4-Fluorophenylboronic acid is a boron compound that has been used in molecular modeling and functional assays. It has been shown to be a strong ligand for palladium complexes and can be used to synthesize metal complexes. 4-Fluorophenylboronic acid has also been shown to bind to the CB2 receptor with high affinity and selectivity, making it a potential drug for the treatment of pain. This compound can be synthesized by many different methods, but one of the most common is the synthesis from phenylacetic acid and boron trifluoride gas. The other methods include direct reaction with phenylboronic acid, or by heating anhydrous copper chloride in anhydrous hydrochloric acid with boric acid at high temperatures. Magnetic resonance spectroscopy (MRS) has also been used to study its properties. Canagliflozin is an example of a drug that contains this chemical group as</p>Fórmula:C6H6BFO2Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:139.92 g/molDimethylammonium tetrafluoroborate
CAS:Produto Controlado<p>Dimethylammonium tetrafluoroborate is a reagent that is used in organic chemistry. It is a solid with a melting point of -56°C and can be synthesized by the reaction of ethyl amine and hexafluoro-2-butyne. This reagent has been used to synthesize quaternary ammonium salts, anions, and aliphatic hydrocarbons. Dimethylammonium tetrafluoroborate is also employed as a solvent for some devices due to its physicochemical properties, including its low boiling point and high dielectric constant.</p>Fórmula:C2H8BF4NPureza:Min. 95%Peso molecular:132.9 g/mol3,6-Bis(1,1-dimethylethyl)-10-phenyl-9-(2,4,6-trimethylphenyl)-acridinium tetrafluoroborate
CAS:<p>3,6-Bis(1,1-dimethylethyl)-10-phenyl-9-(2,4,6-trimethylphenyl)-acridinium tetrafluoroborate is a high quality reagent that is used as an intermediate in the synthesis of other compounds. It has CAS No. 1810004-87-5 and a molecular weight of 345.7 g/mol. This compound is useful for the synthesis of complex compounds and can be used in fine chemicals. 3,6-Bis(1,1-dimethylethyl)-10-phenyl-9-(2,4,6-trimethylphenyl)-acridinium tetrafluoroborate is also useful for research purposes and can be used as a scaffold for drug discovery. It is also a versatile building block that can be used in reactions to produce speciality chemicals and reaction components such as esters or amides.</p>Fórmula:C36H40BF4NPureza:Min 95%Cor e Forma:PowderPeso molecular:573.51 g/molFmoc-O-tert-butyldimethylsilyl-L-serine
CAS:<p>Fmoc-O-tert-butyldimethylsilyl-L-serine is a monomer that can be used in the solid-phase synthesis of conjugates. It has been shown to be an efficient method for synthesizing bioconjugates, which are used in chemical biology and biotechnology. Fmoc-O-tert-butyldimethylsilyl-L-serine is also efficient for the synthesis of proteins, small organic molecules, and carbohydrates. This monomer is often used as a building block for peptide synthesis because it can be easily removed from the peptides with trifluoroacetic acid or other acid catalysts.</p>Fórmula:C24H31NO5SiPureza:Min. 95%Cor e Forma:SolidPeso molecular:441.59 g/moltert-Butyldimethylsilyl trifluoromethanesulfonate
CAS:<p>tert-Butyldimethylsilyl trifluoromethanesulfonate is a nucleophilic reagent that forms an addition product with metal carbonyls. It can be used for the synthesis of indacaterol maleate, which is a phosphite prodrug for the treatment of asthma and chronic obstructive pulmonary disease. Tert-butyldimethylsilyl trifluoromethanesulfonate has been shown to catalyze asymmetric hydrogenation reactions in the presence of ammonia as a chiral auxiliary. This reagent has also been shown to inhibit the growth of bacteria and fungi through its ability to inhibit protein synthesis.</p>Fórmula:C7H15F3O3SSiCor e Forma:Colorless Clear LiquidPeso molecular:264.34 g/molOctakis(trimethylsiloxy)silsesquioxane
CAS:<p>Octakis(trimethylsiloxy)silsesquioxane is a cross-linking agent that forms covalent bonds with ethylene diamine and aluminium ions. It has been shown to be active against bacterial species such as Staphylococcus aureus, Pseudomonas aeruginosa, and Escherichia coli. Octakis(trimethylsiloxy)silsesquioxane binds to the calcium carbonate of the cell wall, forming a complex that prevents the bacteria from adhering to surfaces. The fluidity of octakis(trimethylsiloxy)silsesquioxane particles allows them to penetrate the cell membrane and inhibit protein synthesis by binding to ribosomes. Octakis(trimethylsiloxy)silsesquioxane can also be used as an encapsulation agent for drugs in order to prevent their degradation by enzymes in the gastrointestinal tract.</p>Fórmula:C24H72O20Si16Pureza:Min. 95%Cor e Forma:Clear LiquidPeso molecular:1,130.18 g/mol3-Acetylphenylboronic acid
CAS:<p>3-Acetylphenylboronic acid is a functional group with an acetyl group substituted for the hydroxyl group of phenol. 3-Acetylphenylboronic acid has been shown to inhibit cholinesterase through competitive inhibition. It also binds to the endocannabinoid receptor CB1 and competes with anandamide, which is a natural ligand of this receptor. 3-Acetylphenylboronic acid may be used as a replacement for fatty acids in carbon nanotubes because it has the same basic structure but does not react with oxygen or other chemicals. 3-Acetylphenylboronic acid also reacts with metal ions such as copper and zinc, which may be due to its electron withdrawing ability.</p>Fórmula:C8H9BO3Pureza:Min. 98 Area-%Cor e Forma:White Slightly Yellow PowderPeso molecular:163.97 g/mol4-Borono-L-phenylalanine
CAS:<p>4-Borono-L-phenylalanine is a boron-containing compound that has been used to study the biological effects of radiation. 4-Borono-L-phenylalanine is an analytical tool for measuring neutron scattering and other physical properties. It has also been used as a biochemical probe in studies of DNA duplexes. 4-Borono-L-phenylalanine is toxic to cells, inhibiting protein synthesis, and it can induce apoptosis in tumor cells. In experimental models, 4-borono-L phenylalanine can be administered orally or intravenously and has shown acute toxicity in animals at doses of up to 1000 mg/kg body weight.</p>Fórmula:C9H12BNO4Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:209.01 g/mol(3,4-Bis(trifluoromethyl)phenyl)boronic acid
CAS:<p>3,4-Bis(trifluoromethyl)phenylboronic acid is a versatile building block that can be used as a reagent in organic synthesis. It has been shown to be a high quality product with the CAS number 1204745-88-9. This chemical is used to produce fine chemicals and research chemicals. 3,4-Bis(trifluoromethyl)phenylboronic acid is also a useful intermediate in the production of complex compounds and can be used as a building block for speciality chemicals.</p>Fórmula:C8H5BF6O2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:257.93 g/molDimethyl(methylthio)sulfonium Tetrafluoroborate
CAS:<p>Dimethyl(methylthio)sulfonium Tetrafluoroborate (DMTSBF) is a synthetic, activated, nucleophilic reagent that has the ability to cleave disulfide bonds in proteins. DMTSBF is used for the synthesis of fatty acids and other organic compounds. It can also be used as an analytical reagent for determining the blood group of proteins. The chloride ion is necessary for this reaction. DMTSBF reacts with a nucleophile (e.g., hydroxyl, amine, thiol) to form a new bond and release sodium carbonate and silver trifluoromethanesulfonate.</p>Fórmula:C3H9BF4S2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:196.04 g/molN-α-Boc-Nε-Z-D-lysine
CAS:<p>N-alpha-Boc-Nepsilon-Z-D-lysine is a fusogenic peptide that has an acidic pKa. It is a potent inhibitor of survivin, which is a protein that regulates cell death. It also inhibits the uptake of l-phenylalanine to promote cancer cell death. The functional groups on this compound are epoxyketones, which have regulatory properties as well as being able to inhibit the growth of cells.</p>Fórmula:C19H28N2O6Pureza:Min. 95%Peso molecular:380.44 g/mol3-Trifluoromethoxyphenylboronic acid
CAS:<p>3-Trifluoromethoxyphenylboronic acid is a lead compound that has the potential to be an efficient and water-soluble inhibitor of protein kinases. It has been shown to have a significant inhibitory effect on vismodegib transport. This compound may also have anticancer properties. 3-Trifluoromethoxyphenylboronic acid binds to the active site of protein kinases, blocking their catalytic activity and inhibiting cell proliferation by interfering with the signaling pathway that regulates cancer cells.</p>Fórmula:C7H6BF3O3Pureza:Min. 90%Cor e Forma:PowderPeso molecular:205.93 g/molN-Benzyl-4-phenyl pyridinium tetrafluoroborate
CAS:<p>N-Benzyl-4-phenyl pyridinium tetrafluoroborate is a fine chemical that can be used as a building block in the synthesis of complex compounds. It has been shown to have versatile applications in organic synthesis, such as being a useful intermediate and reaction component. N-Benzyl-4-phenyl pyridinium tetrafluoroborate is an extremely high quality reagent with few side effects and low toxicity.</p>Fórmula:C18H16N•BF4Pureza:Min. 95%Peso molecular:333.13 g/mol3-Aminopropyldiisopropylethoxysilane
CAS:<p>3-Aminopropyldiisopropylethoxysilane (APDS) is a monolayer chemical that is used to modify the surface properties of a variety of substrates. This chemical can be used for patterning, functionalization, and immobilization of biomolecules. APDS has been shown to have a protective effect on cells in culture by preventing oxidation and denaturation of proteins. APDS also has been used for detection methods such as electron microscopy and photoelectron spectroscopy.</p>Fórmula:C10H29NO2Si3Pureza:Min. 95%Cor e Forma:Clear LiquidPeso molecular:279.6 g/mol4-Bromophenylboronic acid
CAS:<p>4-Bromophenylboronic acid is a boronic acid with a basic structure. It has been used to synthesize picolinic acid, which is a water-soluble drug with light emission and anhydrous sodium. 4-Bromophenylboronic acid has been shown to have diagnostic properties because of its ability to enhance the concentration–time curve of sodium salts in human serum. It can also be used as an asymmetric synthesis agent for the production of fatty acids.</p>Fórmula:C6H6BBrO2Pureza:Min. 97.5 Area-%Cor e Forma:PowderPeso molecular:200.83 g/mol1-Isopropyl-o-carborane
CAS:Produto Controlado<p>1-Isopropyl-o-carborane is a solvent that is used in the preparation of alicyclic and iso-alicyclic compounds. It can be used as an alkylating agent for the preparation of substituted cyclohexanes, butyric acid, and aldehydes. 1-Isopropyl-o-carborane has been shown to react with carbon nuclei to form organometallic reagents. This reaction allows for the substitution of hydrogen atoms in hydrocarbons with other organic groups. 1-Isopropyl-o-carborane is also an organometallic reagent that reacts with butyric acid to form 1,2,3,4,5,6,-hexahydrobenzocyclobuta[cd]pentalene and 1,2,3,4,-tetrahydrobenzocyclobuta[cd]pentalene.</p>Pureza:Min. 95%N-α,ε-Bis-Fmoc-D-lysine
CAS:<p>N-α,ε-Bis-Fmoc-D-lysine is a protease inhibitor that inhibits the protease activity of a number of proteases, including trypsin, chymotrypsin and elastase. It is an immunogenic protein. N-α,ε-Bis-Fmoc-D-lysine has been shown to be effective in preventing the immune response against peptides when used as an adjuvant for vaccines. This protein has also been shown to have proton nmr spectral properties that are similar to those of natural amino acids and therefore may not be detected by the immune system as a foreign antigen. N-α,ε-Bis-Fmoc-D-lysine has been postulated to act as a cell maturation agent through its ability to inhibit protein synthesis or cellular growth.</p>Fórmula:C36H34N2O6Pureza:Min. 95%Cor e Forma:PowderPeso molecular:590.67 g/molSodium tetrakis[3,5-bis(trifluoromethyl)phenyl]borate
CAS:<p>Tetrakis(3,5-bis(trifluoromethyl)phenyl)borate is a boron compound that has the formula [(CH)B] and is an ionic compound. It is a model system for studying conformational properties of organic compounds in solution. A reaction solution containing sodium tetrakis(3,5-bis(trifluoromethyl)phenyl)borate reacts with coumarin derivatives to form stable complexes. These complexes are then detected by infrared spectroscopy, mass spectrometry, and nuclear magnetic resonance (NMR). This method has been applied to urine samples and plasma from healthy subjects as well as human serum. The stable complexes can be used to measure the concentration of free coumarin derivatives in these samples. The cationic polymerization of polystyrene was studied using tetrakis(3,5-bis(trifluoromethyl)phenyl)borate</p>Fórmula:C32H12BF24•NaPureza:(%) Min. 95%Cor e Forma:PowderPeso molecular:886.2 g/molo-Carborane-9-Carboxylic acid
CAS:Produto Controlado<p>o-Carborane-9-carboxylic acid (C9CA) is a new antitumour agent that has been shown to be effective against human tumour cells and tumour cell lines. C9CA also has a high affinity for the active site of the enzyme dihydrofolate reductase, which is involved in the synthesis of DNA. The antitumour activity of C9CA is mediated by its ability to inhibit DNA synthesis and induce apoptosis. C9CA has been shown to be less toxic than methotrexate and doxorubicin, with the potential for fewer side effects.</p>Pureza:Min. 95%Potassium tris(3,5-dimethyl-1-pyrazolyl)borohydride
CAS:<p>Potassium tris(3,5-dimethyl-1-pyrazolyl)borohydride is a catalytic reagent that converts various ketones to their corresponding cyclic 3,5-dimethylpyrazoles. It has been used for the synthesis of 1,4-dihydropyridines and for the conversion of aliphatic nitro compounds to their corresponding anilines. The yields are high and it has been shown to be more efficient than other methods in the literature. This reagent also has an intramolecular reaction mechanism and is able to reduce chloride ions into chloride gas.</p>Fórmula:C15H22BKN6Pureza:Min. 95%Cor e Forma:PowderPeso molecular:336.28 g/molAdrenochrome monoaminoguanidine mesilate
CAS:<p>Adrenochrome monoaminoguanidine mesilate is a synthetic drug that has been used in the treatment of cellulite, obesity, and chronic fatigue syndrome. It is an orally administered drug that causes the body to release adrenaline and noradrenaline. Adrenochrome monoaminoguanidine mesilate is a crystalline substance with a melting point of 130-140°C. The drug contains no additives or excipients other than gelatinization and cellulose.</p>Fórmula:C11H17N5O5SPureza:Min. 95%Cor e Forma:PowderPeso molecular:331.35 g/mol6-Chloro-2-fluoropyridine-3-boronic acid
CAS:<p>6-Chloro-2-fluoropyridine-3-boronic acid is a versatile building block for the synthesis of complex compounds, which can be used as a reagent in research or as a speciality chemical. This compound can be used as an intermediate, reaction component, or scaffold to synthesize other more complex structures. 6-Chloro-2-fluoropyridine-3-boronic acid is available in high quality and has CAS No. 1256345-66-0.</p>Fórmula:C5H4BClFNO2Pureza:Min. 95%Cor e Forma:Light (Or Pale) Orange SolidPeso molecular:175.35 g/molTrichloro(1H,1H,2H,2H- tridecafluoro-n-octyl)silane
CAS:<p>Trichloro(1H,1H,2H,2H-tridecafluoro-n-octyl)silane is a chemical compound with the formula CClF[CF(CF)CFSiCl]. It is a colorless liquid that can be used in coatings and as a precursor to other fluorinated compounds. Trichloro(1H,1H,2H,2H-tridecafluoro-n-octyl)silane has been shown to have synergistic effects when combined with cationic surfactants and laser ablation techniques for microbial infection. This compound also has transport properties that are influenced by the presence of water vapor. Trichloro(1H,1H,2H,2H-tridecafluoro-n-octyl)silane is an inert monolayer on boron nitride substrates and has constant optical properties.</p>Fórmula:C8H4Cl3F13SiPureza:Min. 95%Cor e Forma:Clear LiquidPeso molecular:481.54 g/mol4-Isopropylphenylboronic acid
CAS:<p>4-Isopropylphenylboronic acid is a chiral organic chemical that is used as a Grignard reagent. It is an optically pure compound that can be isolated by recrystallization. The optical purity of 4-isopropylphenylboronic acid has been confirmed by the red shift observed in its IR spectrum. This compound undergoes nucleophilic substitution reactions, and it also catalyses the hydrostannylation of styrene with phenyllithium or butyllithium. The synthesis of this molecule requires relatively mild reaction conditions, and it can be obtained in high yield.</p>Fórmula:C9H13BO2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:164.01 g/mol1,4-Phenylenebisboronic acid
CAS:<p>1,4-Phenylenebisboronic acid is a chemical compound with the following structural formula:<br>It is a white crystalline solid, soluble in water and ethanol. 1,4-Phenylenebisboronic acid has been used for analytical chemistry and photochemical studies. It has also been studied as a model system for ternary complex formation, x-ray diffraction data analysis, and ester linkages. Structural analysis of 1,4-phenylenebisboronic acid reveals hydrogen bonding interactions between the nitrogen atoms and the boron atoms.</p>Fórmula:C6H8B2O4Pureza:Min. 95 Area-%Cor e Forma:PowderPeso molecular:165.75 g/mol4-Amino-2-chlorophenylboronic acid pinacol ester
CAS:<p>4-Amino-2-chlorophenylboronic acid pinacol ester is a versatile building block that is used in the synthesis of complex compounds. It can be used as a research chemical, reagent, or speciality chemical depending on the desired use. 4-Amino-2-chlorophenylboronic acid pinacol ester reacts with nucleophiles to form covalent bonds and is also useful as a scaffold for synthesizing other compounds. This compound has been shown to be useful in the synthesis of many different types of chemicals.</p>Fórmula:C12H17BClNO2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:253.53 g/molEthylboronic acid
CAS:<p>Ethylboronic acid is a β-amino acid with a serine protease inhibitory effect. It has been shown to inhibit the Toll-like receptor cascade, which is involved in the inflammatory response. Ethylboronic acid also inhibits the serine proteases that are responsible for cleaving peptides at their carboxy termini. This inhibition leads to an increase in the level of active peptides and a decrease in the level of inactive peptides, which can lead to an antimicrobial effect. Ethylboronic acid also inhibits chloride ion channels, which may lead to new treatments for asthma and cancer.</p>Fórmula:C2H7BO2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:73.89 g/molN-Methyl-N-trimethylsilylacetamide
CAS:<p>N-Methyl-N-trimethylsilylacetamide is a bifunctional amide that can react with an electrophile, such as hexane, to form an N-methylated product. The amide group of the molecule can also be deprotonated by a strong base to form an enolate, which can then react with a nucleophile. The NMR spectra of this compound show that it has a multinuclear structure and contains two tautomers. It is used in analytical chemistry for sample preparation, chromatographic science for reaction intermediates, and chemical study for its reactivity.</p>Fórmula:C6H15NOSiPureza:Min. 97 Area-%Cor e Forma:Clear LiquidPeso molecular:145.27 g/mol(E)-2-(1-Butenyl)-1,3,2-benzodioxaborole
CAS:<p>(E)-2-(1-Butenyl)-1,3,2-benzodioxaborole is a novel glycogen synthase inhibitor that has been shown to be effective in diabetic animal models. It was found to inhibit the activity of glycogen phosphorylase and increase the level of glycogen in the liver. (E)-2-(1-Butenyl)-1,3,2-benzodioxaborole has been optimized by replacing one or more of its moieties with anthranilimide groups. This replacement increases potency by 2 orders of magnitude with nanomolar potency. (E)-2-(1-Butenyl)-1,3,2-benzodioxaborole inhibits xanthine oxidase and xanthine dehydrogenase enzymes and prevents the formation of uric acid from xanthine during purine metabolism. It also inhibits glycolysis and glucose production through inhibition of phosphofructokinase 1.</p>Fórmula:C10H11BO2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:174 g/mol(2-Aminophenyl)boronic acid hydrochloride
CAS:<p>(2-Aminophenyl)boronic acid hydrochloride is an analytical reagent that is used in the cross-coupling reaction between aryl bromides and organoboron compounds. It has been synthesized from 2-aminophenylboronic acid, which can be produced by the alkylation of phenol with 3-bromoquinoline. This compound has been shown to have antimalarial activity against the human malaria parasite Plasmodium falciparum in vitro. (2-Aminophenyl)boronic acid hydrochloride has also been shown to have a high intestinal absorption rate when given orally to rats. In vivo studies are needed to determine whether this chemical is safe for humans.</p>Fórmula:C6H9BClNO2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:173.41 g/molPoly(methylhydrosiloxane)
CAS:<p>Polymethylhydrosiloxane is a polymer that is used in coatings and adhesives. It has been shown to be an efficient aid for removing copper chloride from water and can be applied to the treatment of calcium carbonate sludge. Poly(methylhydrosiloxane) also has high affinity for fatty esters, which is important for its use as a mass analyzer in environmental pollution studies. This polymer has been shown to have excellent kinetic and optical properties, making it a good candidate for electrochemical studies.</p>Cor e Forma:Colorless Clear Liquid2,4-Dimethoxypyrimidine-5-boronic acid, pinacol ester
CAS:<p>2,4-Dimethoxypyrimidine-5-boronic acid is a high quality chemical that can be used as a reagent or a complex intermediate. It is an important building block for the synthesis of many compounds and has been shown to be useful in the synthesis of 2,4-dimethoxybenzaldehyde. This compound has been used in the preparation of 2,4-dimethoxypyrimidin-5(6H)-ones and as a reaction component in organic chemistry.</p>Fórmula:C12H19BN2O4Pureza:Min. 97%Peso molecular:266.1 g/mol3-Aminophenylboronic acid hemisulphate
CAS:<p>3-Aminophenylboronic acid hemisulphate is a cross-linking agent that has been shown to induce apoptosis in mammalian cells. It also has the ability to bind to glycan, a sugar molecule on the surface of cells. The binding of 3-aminophenylboronic acid hemisulphate induces morphogenetic protein (MP) secretion, which leads to cell death. This compound is used as an adjuvant in vaccines and also as a research reagent for studying protein sequences and antigen/antibody interactions.</p>Fórmula:C6H8BNO2•(H2SO4)0Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:185.98 g/molCarboxyethylsilanetriol sodium salt - 25% in water
CAS:<p>Carboxyethylsilanetriol sodium salt - 25% in water is a reagent that is used to form complex compounds. It can be used as a reaction component or a building block to create more complex compounds, such as new medicines. Carboxyethylsilanetriol sodium salt - 25% in water has been shown to be an efficient and versatile scaffold for the production of fine chemicals and research chemicals. CAS No. 18191-40-7 is a speciality chemical that can react with other organic compounds to form new compounds for research purposes. Carboxyethylsilanetriol sodium salt - 25% in water is a useful intermediate and building block for various synthetic reactions because it can easily react with other organics to form new compounds which are useful in pharmaceuticals, agrochemicals, and other industries.</p>Fórmula:C3H6Na2O5SiPureza:Approximately 25%Cor e Forma:Clear LiquidPeso molecular:196.14 g/molIsobutylboronic acid
CAS:<p>Isobutylboronic acid is a chemical compound that is used as an antimicrobial treatment for autoimmune diseases. This drug has a polyene structure and inhibits the production of proinflammatory cytokines such as IL-1, TNF-α, and IL-2. Isobutylboronic acid also inhibits the growth of cancer cells in vitro by inhibiting DNA synthesis. Isobutylboronic acid is also used to determine the mechanisms of organometallic compounds. It can be analyzed using liquid chromatography or gas chromatography techniques. The effective dose for this drug is not yet known.</p>Fórmula:C4H11BO2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:101.94 g/mol(R)-(-)-3,3′-Bis(triphenylsilyl)-1,1′-binaphthyl-2,2′-diyl hydrogenphosphate
CAS:<p>(R)-(-)-3,3′-Bis(triphenylsilyl)-1,1′-binaphthyl-2,2′-diyl hydrogenphosphate is a fine chemical that is a useful reagent and building block. It can be used as an intermediate in the synthesis of complex compounds. This chemical has a CAS number of 791616-55-2 and is classified as a speciality chemical. (R)-(-)-3,3′-Bis(triphenylsilyl)-1,1′-binaphthyl-2,2′-diyl hydrogenphosphate is also a versatile building block for the synthesis of reaction components with high quality.</p>Fórmula:C56H41O4PSi2Pureza:Min. 94.5 Area-%Cor e Forma:PowderPeso molecular:865.07 g/mol1,1,1,3,5,7,7,7-Octamethyltetrasiloxane
CAS:<p>1,1,1,3,5,7,7,7-Octamethyltetrasiloxane is a volatile liquid that is used as a fumigant. It is used in the manufacture of silicone elastomers and sealants. This chemical has been shown to be an effective sealant and to have good adhesion properties. It also has excellent resistance to high temperatures and chemicals. The mechanism of 1,1,1,3,5,7,7,7-octamethyltetrasiloxane is not fully understood but it may involve hydrogen bonding with the organic solvent. In addition to its use as a sealant and fumigant this chemical can be used as a ligand for bifunctional catalysts for polymerization reactions or for kinetic studies on polyolefins</p>Fórmula:C8H26O3Si4Pureza:Min. 95%Cor e Forma:Clear LiquidPeso molecular:282.63 g/mol1,3-Dichloro-1,1,3,3-tetraisopropyldisiloxane
CAS:<p>1,3-Dichloro-1,1,3,3-tetraisopropyldisiloxane is a chromatographic stationary phase that has been used for the analysis of oligosaccharides and hydrogen bonds. 1,3-Dichloro-1,1,3,3-tetraisopropyldisiloxane has been shown to be useful in the separation of uridine from other nucleotides. It also has been shown to be useful as a titration calorimetry standard. This stationary phase can be used with fluorescence spectrometry and tryptophan fluorescence for structural analysis of pyrimidine compounds. Molecular modeling studies have also demonstrated that this stationary phase is stereoselective with regards to hydroxyl group emissions. The 1,3-Dichloro-1,1,3,3-tetraisopropyldisiloxane stationary phase is</p>Fórmula:C12H28Cl2OSi2Pureza:Min. 95%Cor e Forma:Colorless Slightly Yellow Clear LiquidPeso molecular:315.43 g/molChlorotris(trimethylsilyl)silane
CAS:<p>Chlorotris(trimethylsilyl)silane is a chlorosilane with a trifluoromethyl group and one other organic group. It can be prepared by thermal decomposition of chlorotrimethylsilane. Chlorotris(trimethylsilyl)silane has been used in the synthesis of branched-chain alkanes and cycloalkanes, as well as in the preparation of molecular fragments for use in organometallic syntheses. This molecule absorbs ultraviolet light strongly at 254 nm, making it useful for measurements of UV absorption spectra.</p>Fórmula:C9H27ClSi4Pureza:Min. 95 Area-%Cor e Forma:White PowderPeso molecular:283.11 g/mol5-Formyl-2-thiopheneboronic acid
CAS:<p>5-Formyl-2-thiopheneboronic acid is a synthetic molecule that has been shown to be an effective electron microscope stabilizer. It is a boronate ester with a formyl group at the 2-position and a thiophene ring at the 5-position. The chloride in this molecule is used as a functional group, which can then react with other molecules to form new compounds. The functional theory of 5-formyl-2-thiopheneboronic acid includes its ability to form bonds with other molecules and its use as an inorganic base. The particle size of 5-formyl-2-thiopheneboronic acid is unsymmetrical, making it different from other molecules.</p>Fórmula:C5H5BO3SPureza:Min. 95%Cor e Forma:PowderPeso molecular:155.97 g/molN-α-tert-BOC-N-ε-formyl-L-lysine
CAS:<p>N-alpha-tert-BOC-N-epsilon-formyl-L-lysine is a dry weight of 4.1g/100g. It's diameter is 2.5mm with a growth rate of 0.3mm per day. This compound has been statistically shown to have no effect on the growth rates of bacteria in the presence of zinc bacitracin. The leucaena plant, which is a natural source of antibiotics, can be used as a sustainable treatment for bacterial infections because it contains N-alpha-tert-BOC-N-epsilon-formyl-L-lysine and other compounds that are effective against infections. This compound also catalyses energy efficiency, by providing an alternative to antibiotics, which may lead to more sustainable treatments for bacterial infections.</p>Fórmula:C12H22N2O5Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:274.31 g/molTriphenylchlorosilane
CAS:<p>Triphenylchlorosilane is a reactive compound that has been used as a model system for studying the reaction of congestive heart failure. It has been shown to inhibit energy metabolism and cell factor, which are important factors in the progression of congestive heart failure. Triphenylchlorosilane also reacts with p-hydroxybenzoic acid to form an unstable intermediate, which undergoes intramolecular hydrogen transfer to give the final product. The reaction mechanism is proposed to be a coordination geometry involving three chlorine atoms. This compound is not reactive with sodium salts or structural analysis, but it does bind signal peptide in vivo models and can be used as a probe for protein-protein interactions.</p>Fórmula:C18H15ClSiPureza:Min. 95%Cor e Forma:PowderPeso molecular:294.85 g/mol1-Isopropyl-5-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)-1H-pyrazole
CAS:<p>1-Isopropyl-5-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)-1H-pyrazole is a compound with a high quality and versatile building blocks. It can be used as a reagent in organic synthesis and as a research chemical. CAS No. 1282518-60-8.</p>Fórmula:C12H21BN2O2Pureza:Min. 98 Area-%Cor e Forma:Colorless PowderPeso molecular:236.12 g/molFerrocenium Tetrafluoroborate
CAS:<p>Ferrocenium tetrafluoroborate is a chiral, unreactive compound that is synthesized through the reaction of ferrocene and tetrafluoroboric acid. Ferrocenium tetrafluoroborate is a kinetic polymer that can be used as a linker in the synthesis of polymeric materials. This compound has been shown to catalyze the epoxidation of aliphatic alcohols to yield epoxides. Ferrocenium tetrafluoroborate has also been shown to catalyze the epoxidation of cyclic olefins, such as 1-octene. Ferrocenium tetrafluoroborate is an achiral catalyst and does not change during the course of the reaction.</p>Fórmula:C10H2BF4FeCor e Forma:Brown PowderPeso molecular:264.77 g/mol(1-Methylethyl)boronic acid
CAS:<p>(1-Methylethyl)boronic acid is a boronic acid that can be used as a catalyst in organic synthesis. This compound is an organometallic compound that has been shown to be a good catalyst for the polymerization of olefins, and for the preparation of copolymers with polyenes. It can also be used in asymmetric synthesis and as a site-specific ligand in transition metal catalyzed reactions. (1-Methylethyl)boronic acid has been shown to inhibit protease activity and may have therapeutic potential for metabolic disorders such as obesity.</p>Fórmula:C3H9BO2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:87.91 g/molN-Propyl-1-ene-2,6-diethyl-4-phenylpyridinium tetrafluoroborate
CAS:<p>N-Propyl-1-ene-2,6-diethyl-4-phenylpyridinium tetrafluoroborate (NPEEDPBF) is a fine chemical that has been used as a building block in research and industrial chemistry. The synthesis of NPEEDPBF typically involves the reaction of diethyl phenylpyridinium bromide with n propyl iodide. It can be used as a reagent for organic syntheses and as an intermediate for other compounds. NPEEDPBF is also a versatile building block for complex compounds.</p>Fórmula:C18H22N•BF4Pureza:Min. 95%Peso molecular:339.18 g/mol2,3-Dimethoxyphenylboronic acid
CAS:<p>2,3-Dimethoxyphenylboronic acid is a synthetic molecule that contains a boronic acid group. This compound has been shown to interact with histones H3 and L6. It has also been shown to modify lysine residues on the histone H3 protein by methylation. In addition, 2,3-dimethoxyphenylboronic acid interacts with other molecules in a way that changes their conformation and this interaction can be studied using vibrational spectroscopy. Organic chemists may use 2,3-dimethoxyphenylboronic acid as a ligand for biological targets or as a means of modifying proteins.</p>Fórmula:C8H11BO4Pureza:Min. 95%Cor e Forma:PowderPeso molecular:181.98 g/molFerroceneboronic acid
CAS:<p>Ferroceneboronic acid is a reagent, complex compound, useful intermediate, fine chemical and useful scaffold. It is also a versatile building block for the synthesis of speciality chemicals. Ferroceneboronic acid reacts with an organic halide to form a ferrocenyl-containing boronate ester that is useful as a reaction component in organic synthesis. The CAS number for ferroceneboronic acid is 12152-94-2.</p>Fórmula:C5H6BO2·C5H5·FePureza:Min. 95 Area-%Cor e Forma:PowderPeso molecular:229.85 g/molPyrimidine-4-boronic acid
CAS:<p>Pyrimidine-4-boronic acid is a pyrimidine derivative that is used as a building block or intermediate in organic chemistry. It has the CAS number 852362-24-4 and can be found in research chemicals and speciality chemicals. Pyrimidine-4-boronic acid is a versatile chemical with many uses, including as a reaction component or reagent. This compound has many properties that make it useful for synthesis, such as its low toxicity and high quality.</p>Fórmula:C4H5BN2O2Pureza:Min. 95 Area-%Cor e Forma:PowderPeso molecular:123.91 g/molQuinolin-4-ylboronic acid
CAS:<p>Quinolin-4-ylboronic acid is a heterocyclic compound with two nitrogen atoms that are attached to the ring by means of carbonyl groups. This compound is a precursor in the synthesis of the drug dorsomorphin, which is used for pain relief. It also has an important role in pharmacokinetics because it can be used as a marker for estimating blood levels of other drugs. Quinolin-4-ylboronic acid yields an active form, quinolin-4-yl boronic acid, when reacted with piperazine in basic conditions. The drug ldn-193189 is a derivative of this active form and has been evaluated as a potential drug for treating osteoporosis and cancer.</p>Fórmula:C9H8BNO2Pureza:Min. 95 Area-%Cor e Forma:PowderPeso molecular:172.98 g/mol(3,4,5-Trimethoxyphenyl)boronic acid
CAS:<p>(3,4,5-Trimethoxyphenyl)boronic acid is an active analogue of 3,4,5-trimethoxybenzoic acid. It has potent anti-inflammatory properties and inhibits cancer cell proliferation. (3,4,5-Trimethoxyphenyl)boronic acid has been shown to inhibit the growth of cancer cells in vitro by binding to the gyrase enzyme. This drug also has biological properties that may be useful for treating human liver diseases such as hepatic steatosis or nonalcoholic fatty liver disease (NAFLD).</p>Fórmula:C9H13BO5Pureza:Min. 95 Area-%Cor e Forma:PowderPeso molecular:212.01 g/mol2-(MorpholinoMethyl)phenylboronic acid pinacol ester
CAS:<p>2-(MorpholinoMethyl)phenylboronic acid pinacol ester is a fine chemical that can be used as a building block for the synthesis of complex compounds. It is also suitable for use in research and development, as it has been shown to be a reagent and speciality chemical. This compound is an intermediate for the synthesis of other compounds, such as pharmaceuticals, agrochemicals, and cosmetics. 2-(MorpholinoMethyl)phenylboronic acid pinacol ester can be used as a versatile building block in organic synthesis reactions. It has been shown to have high quality properties and can be used to synthesize valuable scaffolds.</p>Fórmula:C17H26BNO3Pureza:Min. 95%Cor e Forma:PowderPeso molecular:303.20 g/molCrisaborole
CAS:<p>Crisaborole is a topical antimicrobial peptide that was approved by the FDA in 2017 for the treatment of mild to moderate atopic dermatitis and eczema. It belongs to a class of drugs called small-molecule inhibitors of phosphodiesterase 4 (PDE4). PDE4 is an enzyme that hydrolyzes cyclic adenosine monophosphate (cAMP) and thereby reduces the levels of cAMP in cells. Crisaborole binds to the PDE4 enzyme and blocks its activity, leading to an increase in the level of cAMP. This increased concentration of cAMP leads to suppression of inflammation, which is a major symptom associated with skin diseases such as dermatitis and eczema.</p>Fórmula:C14H10BNO3Pureza:Min. 95%Cor e Forma:PowderPeso molecular:251.05 g/mol2-Chloro-1-methylquinolinium tetrafluoroborate
CAS:<p>2-Chloro-1-methylquinolinium tetrafluoroborate (2CQBF) is a synthetic compound that inhibits protein synthesis. It has been used as an analytical reagent for the determination of proteins, including those in urine samples. 2CQBF has been shown to be effective in the treatment of cancer and other diseases, such as lupus erythematosus, arthritis, and psoriasis.</p>Fórmula:C10H9ClN•BF4Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:265.44 g/moltrans-1-Propen-1-yl-boronic acid
CAS:<p>Trans-1-propenylboronic acid is a boronic acid that can be used to synthesize chiral compounds. It is a product of the Sharpless asymmetric dihydroxylation reaction and has been shown to inhibit the activity of aldehyde oxidase. Trans-1-propenylboronic acid is reusable, which makes it an economical alternative to other boronic acids. The enantiomer of trans-1-propenylboronic acid can be obtained by the Suzuki coupling reaction with a variety of different electrophiles. This product also forms hydrogen bonds with the substrate and has shown anti-inflammatory effects in mice. Trans-1-propenylboronic acid can also undergo oxidation, reduction, or cyclization reactions and can form monosubstituted alicyclic products.</p>Fórmula:C3H7BO2Pureza:Min. 95%Cor e Forma:SolidPeso molecular:85.9 g/molTrimethoxy(3,3,3-trifluoropropyl)silane
CAS:<p>Trimethoxy(3,3,3-trifluoropropyl)silane is a chemical that is used as a coating for metals and plastics. It has been shown to be an excellent lubricant and can be used as a fuel additive. Trimethoxy(3,3,3-trifluoropropyl)silane is also used in analytical chemistry for gravimetric analysis. This chemical can undergo reactions with other compounds such as hydrogen gas to form trimethoxysilane (SiH), which can be detected by FT-IR spectroscopy. Trimethoxy(3,3,3-trifluoropropyl)silane also reacts with metal ions in the presence of light to form metal complexes that have potential applications in photovoltaic devices and electrochemical studies. !--END--> !--END--></p>Fórmula:C6H13F3O3SiPureza:Min. 95%Cor e Forma:Clear LiquidPeso molecular:218.25 g/mol(1R)-(1S,2S,3R,5S)-Pinanediol-N-(N-pyrazinylphenylalaninoyl)-1-amino-3-methyl-butane-1-boronate
CAS:<p>(1R)-(1S,2S,3R,5S)-Pinanediol-N-(N-pyrazinylphenylalaninoyl)-1-amino-3-methyl-butane-1-boronate is a boronic acid derivative that has been shown to have an antiproliferative effect on cancer cells. It is a biodegradable, water soluble drug with a low toxicity profile. The maximum tolerated dose has been established in vivo studies and it can be used as an imaging agent for diagnosis. (1R)-(1S,2S,3R,5S)-Pinanediol-N-(N-pyrazinylphenylalaninoyl)-1-amino-3-methyl-butane-1-boronate may be used to treat cancers such as breast cancer or leukemia. This drug targets the proteasome and inhibits its activity by binding to the active site of the 20s</p>Fórmula:C29H39BN4O4Pureza:Min. 95%Cor e Forma:SolidPeso molecular:518.46 g/molBis(trimethylsilyl)cytosine
CAS:<p>Bis(trimethylsilyl)cytosine is an immunosuppressive agent that binds to the immunodeficient acceptor. It has been shown to be active against a number of viruses, including HIV-1 and HSV-1. Bis(trimethylsilyl)cytosine also inhibits the activity of purine and pyrimidine nucleotide synthesis, although it does not inhibit the activity of adenosine deaminase or ribonucleotide reductase. This compound has been shown to stimulate the immune system in mice with a deficiency in T cells by reducing the expression of genes that are responsible for cytokines such as IL-4 and IL-10.</p>Fórmula:C10H21N3OSi2Pureza:Min. 90%Cor e Forma:PowderPeso molecular:255.46 g/mol(S)-BoroLeu-(+)-pinanediol-trifluoroacetate
CAS:<p>(S)-BoroLeu-(+)-pinanediol-trifluoroacetate is a useful scaffold, building block, and intermediate for the synthesis of complex compounds. It is a high quality reagent that can be used in research chemicals and speciality chemicals. (S)-BoroLeu-(+)-pinanediol-trifluoroacetate is a versatile building block because it can be used as a reaction component in the synthesis of fine chemicals and as an intermediate in the synthesis of other reagents. CAS No. 477254-69-6</p>Fórmula:C15H28BNO2·C2HF3O2Pureza:Min. 95%Cor e Forma:PowderPeso molecular:379.22 g/molTrimethylsilylacetylene
CAS:<p>Trimethylsilylacetylene is a chemical compound that belongs to the class of organic compounds. It is an intermediate in the production of fatty acids and has been shown to be involved in the metabolism of other compounds, such as halides. Trimethylsilylacetylene is also used to inhibit inflammatory diseases and metabolic disorders, such as diabetes mellitus and Alzheimer's disease. Trimethylsilylacetylene inhibits replication by binding to the amine group on purine bases or DNA at the replication fork. This prevents DNA synthesis, which prevents cell division, causing cells to die. Trimethylsilylacetylene also inhibits cell division by reacting with carbonyl groups on proteins during replication.</p>Fórmula:C5H10SiPureza:Min. 95%Cor e Forma:Colorless Clear LiquidPeso molecular:98.22 g/molTris[3-(trimethoxysilyl)propyl] isocyanurate
CAS:<p>Tris(trimethoxysilyl)propyl isocyanurate (TTIPi) is an efficient method for the synthesis of conjugates. TTIPi can be used to prepare a variety of conjugates, such as those containing biomolecules such as proteins, peptides, nucleotides, and small molecules. The resulting conjugates can be visualized by microscopy and analyzed using the Anova statistical package. TTIPi has been shown to form covalent bonds with DNA bases and other substrates. It has also been shown to form coordination bonds with ethylene oxide or tetraethyl silane which are worthwhile for dispersive polymerization in organic solvents. The mesoporous silica support used in this process has been shown to be acidic or basic depending on the pH of the solution. This versatile technique is useful for preparing a wide range of conjugates.</p>Fórmula:C21H45N3O12Si3Pureza:Min. 95%Cor e Forma:Colorless Clear LiquidPeso molecular:615.85 g/molN-[3-(4,4,5,5-TetraMethyl-[1,3,2]dioxaborolan-2-yl)-phenyl]succinamic acid
CAS:<p>N-[3-(4,4,5,5-TetraMethyl-[1,3,2]dioxaborolan-2-yl)-phenyl]succinamic acid is an intermediate in the synthesis of a variety of compounds. It is also a useful building block in the synthesis of complex compounds. In addition to its use as a research chemical and reagent, N-[3-(4,4,5,5-TetraMethyl-[1,3,2]dioxaborolan-2-yl)-phenyl]succinamic acid can be used as a speciality chemical.</p>Fórmula:C16H22BNO5Pureza:Min. 95%Peso molecular:319.16 g/mol4-Biphenylboronic acid
CAS:<p>4-Biphenylboronic acid is a molecule that belongs to the group of amines. It is used in plant science to study the effects of amines on plants. The molecule has been shown to have a high UV absorption and catalysis activity. 4-Biphenylboronic acid has also been shown to bind with p-hydroxybenzoic acid, which inhibits binding with proteins, leading to a change in morphology. 4-Biphenylboronic acid can be used as a chemical inhibitor for root formation and other biological functions.</p>Fórmula:C12H11BO2Pureza:Min. 95%Cor e Forma:White Off-White PowderPeso molecular:198.03 g/molPolysiloxanes di-Me, Me 3,3,3-trifluoropropyl vinyl group-terminated, 14,000-18,000 Cst
CAS:<p>14,000-18,000 Cst</p>Pureza:Min. 95%Cor e Forma:Clear Liquid3,5-Dibromophenylboronic acid
CAS:<p>3,5-Dibromophenylboronic acid is a boronic acid with the chemical formula B(OH)Br. The boron atom in this molecule has a unique electron configuration that allows it to form strong bonds with other atoms and molecules. This reactive compound can be used as a ligand in cross-coupling reactions or to modify an organic molecule by coupling it to another molecule. 3,5-Dibromophenylboronic acid is typically used as a precursor for the synthesis of nanomaterials and can be synthesized from monomers at temperatures ranging from -78°C to 80°C.</p>Fórmula:C6H5BBr2O2Pureza:Min. 95%Peso molecular:279.72 g/mol9-Mesityl-2,7-dimethyl-10-phenylacridinium tetrafluoroborate
CAS:<p>9-Mesityl-2,7-dimethyl-10-phenylacridinium tetrafluoroborate is a versatile building block and reagent for organic synthesis. It is a fine chemical that is used in the production of research chemicals and speciality chemicals. 9-Mesityl-2,7-dimethyl-10-phenylacridinium tetrafluoroborate can be used as a reaction component to synthesize complex compounds with various functional groups. It has been reported to have high quality, being both useful and stable. CAS NO: 1621020-00-5</p>Fórmula:C30H28BF4NCor e Forma:Yellow PowderPeso molecular:489.35 g/molN-Boc-pyrroyl-boronic acid
CAS:<p>N-Boc-pyrroyl-boronic acid is a linker that is used in organic synthesis. It reacts with chloride to form an organochlorine compound, which can be used as an inhibitor of s. aureus or other bacteria. The reaction time for this chemical is shorter than for the corresponding boronic acid, and it does not require the presence of a Lewis acid. This chemical has been shown to have anticancer activity in vitro, and its optimization has been studied using fluorescent carbonyl groups as the active component.</p>Fórmula:C9H14BNO4Pureza:Min. 95%Peso molecular:211.02 g/molN-α-Boc-Nε-4-nitro-Z-L-lysine
CAS:<p>Nepsilon-4-nitro-Z-L-lysine is a plant nutrient that can be used in agricultural and horticultural applications. It is a particle that can be added to the soil to improve fertility and stimulate plant growth. Nepsilon-4-nitro-Z-L-lysine has been shown to have a protective effect on plants against insect pests and fungal infections, as well as inhibiting the formation of toxic compounds during fermentation. This product also provides an alternative to chemical treatment and can be used for environmental monitoring or mesoscale studies. Nepsilon-4-nitro-Z-L-lysine has been shown to improve horse fertility and reduce the number of treatments required for resistant bacterial infections.</p>Fórmula:C19H27N3O8Pureza:Min. 95%Cor e Forma:SolidPeso molecular:425.43 g/molTriisopropoxysilane,95%
CAS:<p>S25283 - Triisopropoxysilane,95%</p>Fórmula:C9H22O3SiPureza:97%Cor e Forma:Liquid, ClearPeso molecular:206.357(4-((Trimethylsilyl)ethynyl)phenyl)methanol
CAS:Fórmula:C12H16OSiPureza:98%Cor e Forma:Liquid, No data available.Peso molecular:204.344Allyl (11S,11aS)-11-((tert-butyldimethylsilyl)oxy)-8-hydroxy-7-methoxy-2-methyl-5-oxo-11,11a-dihydro-1H-benzo[e]pyrrolo[1,2-a][1,4]diazepine-10(5H)-carboxylate
CAS:Pureza:97%Peso molecular:474.6289978Hexadecamethyl heptasiloxane
CAS:<p>S09355 - Hexadecamethyl heptasiloxane</p>Fórmula:C16H48O6Si7Pureza:97%Cor e Forma:LiquidPeso molecular:533.149tert-Butyl(3,4-difluoro-5-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)phenoxy)dimethylsilane
CAS:Pureza:98%Peso molecular:370.3200073Methacryloxymethyltriethoxysilane (stabilised with MEHQ)
CAS:<p>S10520 - Methacryloxymethyltriethoxysilane</p>Fórmula:C11H22O5SiPureza:95%Cor e Forma:Liquid, ClearPeso molecular:262.377n-Decyltrimethoxysilane
CAS:<p>S05625 - n-Decyltrimethoxysilane</p>Fórmula:C13H30O3SiPureza:97%Cor e Forma:LiquidPeso molecular:262.465(2-((3R,5R)-3,5-Bis((tert-butyldimethylsilyl)oxy)cyclohexylidene)ethyl)diphenylphosphine oxide
CAS:Pureza:98%Peso molecular:570.9010011H-PYRROLO[2,3-B]PYRIDINE-5-CARBOXYLIC ACID, 4-CHLORO-1-[TRIS(1-METHYLETHYL)SILYL]-, METHYL ESTER
CAS:Fórmula:C18H27ClN2O2SiPureza:98%Peso molecular:366.962-Methyl-4-trimethylsilyl-3-butyn-2-ol
CAS:<p>S11970 - 2-Methyl-4-trimethylsilyl-3-butyn-2-ol</p>Fórmula:C8H16OSiPureza:98%Cor e Forma:SolidPeso molecular:156.3N-(((9H-Fluoren-9-yl)methoxy)carbonyl)-O-(tert-butyldimethylsilyl)-L-serine
CAS:Pureza:95%Cor e Forma:SolidPeso molecular:441.5989994-Bromo-1-((2-(trimethylsilyl)ethoxy)methyl)-1H-pyrrolo[2,3-b]pyridine
CAS:Pureza:95%Peso molecular:327.2969971Ref: 10-F619787
1g12,00€5g23,00€10g38,00€25g74,00€50g124,00€100g208,00€250g379,00€500g610,00€250mg9,00€tert-Butyldiphenylsilyl trifluoromethanesulfonate
CAS:Fórmula:C17H19F3O3SSiPureza:95%Cor e Forma:LiquidPeso molecular:388.483-Trimethylsilyl phenyl boronic acid
CAS:<p>S20000 - 3-Trimethylsilyl phenyl boronic acid</p>Fórmula:C9H15BO2SiPureza:95%Cor e Forma:SolidPeso molecular:194.11Ref: 10-F763494
1g65,00€5g165,00€10g272,00€25g507,00€100g1.162,00€250g2.904,00€100mg25,00€250mg32,00€4-(((tert-Butyldimethylsilyl)oxy)methyl)piperidine
CAS:Pureza:95%Cor e Forma:LiquidPeso molecular:229.4389954Methyl trially silane
CAS:<p>S11740 - Methyl trially silane</p>Fórmula:C10H18SiPureza:98%Cor e Forma:LiquidPeso molecular:166.339Methacryloxypropyldimethylmethoxysilane min 95%
CAS:<p>S10610 - Methacryloxypropyldimethylmethoxysilane min 95%</p>Fórmula:C10H20O3SiPureza:96%Cor e Forma:LiquidPeso molecular:216.352Nonafluorohexyltriethoxysilane
CAS:<p>S25247 - Nonafluorohexyltriethoxysilane</p>Fórmula:C12H19F9O3SiPureza:97%Cor e Forma:Liquid, ClearPeso molecular:410.352Tetrakis(vinyldimethylsiloxy)silane
CAS:<p>S15910 - Tetrakis(vinyldimethylsiloxy)silane</p>Fórmula:C16H36O4Si5Pureza:95%Cor e Forma:Liquid, ClearPeso molecular:432.885tert-Butyldimethyl(1-(4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl)cyclopropoxy)silane
CAS:Pureza:95%Peso molecular:374.41,2-Diphenyltetramethyldisilane
CAS:<p>S08125 - 1,2-Diphenyltetramethyldisilane</p>Fórmula:C16H22Si2Pureza:97%Cor e Forma:SolidPeso molecular:270.5223-Iopdopropyl trimethoxysilane
CAS:<p>S10050 - 3-Iopdopropyl trimethoxysilane</p>Fórmula:C6H15IO3SiPureza:98%Cor e Forma:Liquid, Clear LiquidPeso molecular:290.1721,2-Bis(dimethylsilyl)benzene
CAS:<p>S01774 - 1,2-Bis(dimethylsilyl)benzene</p>Fórmula:C10H18Si2Pureza:97%Cor e Forma:LiquidPeso molecular:194.424(3aS,4R,6S,6aR)-6-(2-((tert-butyldimethylsilyl)oxy)ethoxy)-2,2-dimethyltetrahydro-3aH-cyclopenta[d][1,3]dioxol-4-amine
CAS:Pureza:98%Peso molecular:331.5280151(1-((2-(TRIMETHYLSILYL)ETHOXY)METHYL)-1H-PYRAZOL-3-YL)METHANOL
CAS:Pureza:98%Peso molecular:228.36700441-((2R,3R,4R,5R)-3-((tert-Butyldimethylsilyl)oxy)-4-hydroxy-5-(hydroxymethyl)tetrahydrofuran-2-yl)pyrimidine-2,4(1H,3H)-dione
CAS:Pureza:95%Peso molecular:358.4660034Trimethylsilylmethyl methacrylate
CAS:<p>S19775 - Trimethylsilylmethyl methacrylate</p>Fórmula:C8H16O2SiPureza:98%Cor e Forma:Liquid, ClearPeso molecular:172.299(Z)-2-((3R,4R,5R)-3,5-BIS((TERT-BUTYLDIMETHYLSILYL)OXY)-4-(3-((TERT-BUTYLDIMETHYLSILYL)OXY)PROPOXY)-2-METHYLENECYCLOHEXYLIDENE)ETHAN-1-OL
CAS:Pureza:95%Peso molecular:587.0759888(3-Thienylethynyl)trimethylsilane
CAS:Fórmula:C9H12SSiPureza:97%Cor e Forma:LiquidPeso molecular:180.34Bromomethyltrimethylsilane
CAS:<p>S02925 - Bromomethyltrimethylsilane</p>Fórmula:C4H11BrSiPureza:95%Cor e Forma:Liquid, ClearPeso molecular:167.121Pyrrolidine, 2-[[[(1,1-dimethylethyl)dimethylsilyl]oxy]diphenylmethyl]-, (2R)-
CAS:Pureza:97%Peso molecular:367.6080017((2-Fluoro-8-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)naphthalen-1-yl)ethynyl)triisopropylsilane
CAS:Pureza:98%Cor e Forma:SolidPeso molecular:452.4899902Benzyltrimethylsilane
CAS:<p>S01050 - Benzyltrimethylsilane</p>Fórmula:C10H16SiPureza:96%Cor e Forma:Liquid, ClearPeso molecular:164.3234-Chloro-1-((2-(trimethylsilyl)ethoxy)methyl)-1H-pyrrolo[2,3-b]pyridine-5-carboxylic acid
CAS:Pureza:98%Peso molecular:326.8500061Hexaphenyldisilane
CAS:<p>S09750 - Hexaphenyldisilane</p>Fórmula:C36H30Si2Pureza:97%Cor e Forma:Solid, White powderPeso molecular:518.8062-[Diphenyl[(trimethylsilyl)oxy]methyl]pyrrolidine
CAS:Pureza:95%Cor e Forma:SolidPeso molecular:325.5273-(tert-Butyldimethylsilyloxy)propan-1-amine
CAS:Fórmula:C9H23NOSiPureza:95%Cor e Forma:LiquidPeso molecular:189.374Tetrakis(trimethylsiloxy)silane
CAS:<p>S15850 - Tetrakis(trimethylsiloxy)silane</p>Fórmula:C12H36O4Si5Pureza:97%Cor e Forma:Liquid, OilPeso molecular:384.1463-(Trimethylsilyl)naphthalen-2-yl trifluoromethanesulfonate
CAS:Pureza:95%Cor e Forma:Viscous LiquidPeso molecular:348.4100037Bis[3-(Triethoxysilyl)Propyl]Amine
CAS:<p>S02125 - Bis[3-(Triethoxysilyl)Propyl]Amine</p>Fórmula:C18H43NO6Si2Pureza:90%Cor e Forma:Liquid, ClearPeso molecular:425.7135-Bromo-1-(triisopropylsilyl)-1H-pyrrolo[2,3-b]pyridine
CAS:Fórmula:C16H25BrN2SiPureza:98%Cor e Forma:SolidPeso molecular:353.379Di-tert-butylsilyl bis(trifluoromethanesulphonate)
CAS:<p>S05900 - Di-tert-butylsilyl bis(trifluoromethanesulphonate)</p>Fórmula:C10H18F6O6S2SiPureza:95%Cor e Forma:LiquidPeso molecular:440.44(4S,5R)-4-[(TERT-BUTYLDIMETHYLSILYL)OXY]-5-{[(TERT-BUTYLDIMETHYLSILYL)OXY]METHYLOXOLAN-2-ONE
CAS:Fórmula:C17H36O4Si2Pureza:95%Peso molecular:360.641N-Benzyl-N-(methoxymethyl)-N-(trimethylsilylmethyl)-amine (tech)
CAS:<p>S00978 - N-Benzyl-N-(methoxymethyl)-N-(trimethylsilylmethyl)-amine (tech)</p>Fórmula:C13H23NOSiPureza:90%Cor e Forma:Liquid, ClearPeso molecular:237.418(S)-3-(tert-Butyldimethylsilyloxy) pyrrolidine
CAS:Fórmula:C10H23NOSiPureza:96%Cor e Forma:Liquid, No data available.Peso molecular:201.385Methacryloxypropylmethyldimethoxysilane (inhibited with MEHQ)
CAS:<p>S10660 - Methacryloxypropylmethyldimethoxysilane (inhibited with MEHQ)</p>Fórmula:C10H20O4SiPureza:95%Cor e Forma:Liquid, Clear to straw liquidPeso molecular:232.351Methyltris(dimethylsiloxy)silane
CAS:<p>S12050 - Methyltris(dimethylsiloxy)silane</p>Fórmula:C7H24O3Si4Pureza:95%Cor e Forma:Clear LiquidPeso molecular:268.6063-((Trimethylsilyl)ethynyl)aniline
CAS:Fórmula:C11H15NSiPureza:98%Cor e Forma:LiquidPeso molecular:189.3331,3-Diphenyl-1,1,3,3-tetramethyldisiloxane
CAS:<p>S08175 - 1,3-Diphenyl-1,1,3,3-tetramethyldisiloxane</p>Fórmula:C16H22OSi2Pureza:95%Cor e Forma:LiquidPeso molecular:286.521Dimethyldiacetoxysilane
CAS:<p>S07050 - Dimethyldiacetoxysilane</p>Fórmula:C6H12O4SiPureza:95%Cor e Forma:Liquid, ClearPeso molecular:176.243Diphenyl difluorosilane
CAS:<p>S07850 - Diphenyl difluorosilane</p>Fórmula:C12H10F2SiPureza:97%Cor e Forma:Liquid, ClearPeso molecular:220.2941,1,1-Trifluoro-N-((trifluoromethyl)sulfonyl)-N-(trimethylsilyl)methanesulfonamide
CAS:Pureza:97%Cor e Forma:LiquidPeso molecular:353.33(3S 4S)-3-[ (R)-1-(T-Butyldimethylsilyloxy)ethyl]-4[(R)-1-carboxyethyl]-2-azetidinone
CAS:<p>S03379 - (3S 4S)-3-[ (R)-1-(T-Butyldimethylsilyloxy)ethyl]-4[(R)-1-carboxyethyl]-2-azetidinone</p>Fórmula:C14H27NO4SiPureza:97%Cor e Forma:SolidPeso molecular:301.4583-Trimethoxysilylpropyl 2-bromo-2-methyl-propionate
CAS:<p>S25284 - 3-Trimethoxysilylpropyl 2-bromo-2-methyl-propionate</p>Fórmula:C10H21BrO5SiPureza:95%Cor e Forma:ClearPeso molecular:329.2624,4-DIMETHYL-1,4-AZASILINANE HCL
CAS:Fórmula:C6H16ClNSiPureza:97%Cor e Forma:SolidPeso molecular:165.74Hexaphenyldisiloxane
CAS:<p>S09775 - Hexaphenyldisiloxane</p>Fórmula:C36H30OSi2Pureza:96%Peso molecular:534.805Methyl 3-(((tert-butyldimethylsilyl)oxy)methyl)cyclobutane-1-carboxylate
CAS:Pureza:97%Peso molecular:258.43301391,4-Bis(trimethylsilyl)1,3-butadiyne
CAS:<p>S02525 - 1,4-Bis(trimethylsilyl)1,3-butadiyne</p>Fórmula:C10H18Si2Pureza:95%Cor e Forma:Solid, Off-white solidPeso molecular:194.4242,5-Dioxopyrrolidin-1-yl (2-(trimethylsilyl)ethyl) carbonate
CAS:Fórmula:C10H17NO5SiPureza:95%Cor e Forma:Solid, White to very pale yellow powderPeso molecular:259.333(4-(((Tert-butyldimethylsilyl)oxy)methyl)cyclohexyl)methanol
CAS:Pureza:97%Peso molecular:258.4769897((4-Bromophenyl)ethynyl)trimethylsilane
CAS:Fórmula:C11H13BrSiPureza:95%Cor e Forma:SolidPeso molecular:253.214(E)-(2-IODOVINYL)TRIMETHYLSILANE
CAS:Fórmula:C5H11ISiPureza:95%Cor e Forma:LiquidPeso molecular:226.132(Methoxymethyl)trimethylsilane
CAS:<p>S10850 - (Methoxymethyl)trimethylsilane</p>Fórmula:C5H14OSiPureza:95%Cor e Forma:Liquid, Clear colourless liquidPeso molecular:118.251Bis(phenylethynyl)dimethylsilane
CAS:<p>S02060 - Bis(phenylethynyl)dimethylsilane</p>Fórmula:C18H16SiPureza:98%Cor e Forma:SolidPeso molecular:260.4114-Trimethylsilyl-3-butyn-1-ol
CAS:<p>S19110 - 4-Trimethylsilyl-3-butyn-1-ol</p>Fórmula:C7H14OSiPureza:98%Cor e Forma:Liquid, Clear LiquidPeso molecular:142.2733-((tert-Butoxycarbonyl)amino)-2-(4-(((triisopropylsilyl)oxy)methyl)phenyl)propanoic acid
CAS:Pureza:98%Peso molecular:451.67898564-(Triethylsilyl)-3-butyn-1-ol
CAS:<p>S17618 - 4-(Triethylsilyl)-3-butyn-1-ol</p>Fórmula:C10H20OSiPureza:95%Cor e Forma:LiquidPeso molecular:184.3541-Trimethylsilyl-1H-Benzotriazole
CAS:<p>S19074 - 1-Trimethylsilyl-1H-Benzotriazole</p>Fórmula:C9H13N3SiPureza:98%Cor e Forma:No data available.Peso molecular:191.309N-(((9H-Fluoren-9-yl)methoxy)carbonyl)-O-(tert-butyldimethylsilyl)-L-homoserine
CAS:Pureza:95%Peso molecular:455.62600713,3-Dibromo-1-((2-(trimethylsilyl)ethoxy)methyl)-1H-pyrrolo[2,3-b]pyridin-2(3H)-one
CAS:Pureza:98%Peso molecular:422.19198611,3-Bis(chloromethyl)tetramethyldisiloxane
CAS:<p>S01450 - 1,3-Bis(chloromethyl)tetramethyldisiloxane</p>Fórmula:C6H16Cl2OSi2Pureza:95%Cor e Forma:Liquid, ClearPeso molecular:231.263-(tert-Butyldimethylsilyloxy)glutaric anhydride
CAS:Fórmula:C11H20O4SiPureza:95%Cor e Forma:SolidPeso molecular:244.362(S)-2-(((TERT-BUTYLDIMETHYLSILYL)OXY)METHYL)PYRROLIDINE
CAS:Fórmula:C11H25NOSiPureza:98%Cor e Forma:LiquidPeso molecular:215.412Ref: 10-F512768
1g155,00€5g462,00€10g883,00€25g1.361,00€2.5g287,00€100mg49,00€250mg72,00€500mg127,00€1-((2-(TRIMETHYLSILYL)ETHOXY)METHYL)-2-BROMO-1H-IMIDAZOLE-4-CARBONITRILE
CAS:Fórmula:C10H16BrN3OSiPureza:97%Cor e Forma:SolidPeso molecular:302.247tert-Butyl 2′-oxo-1′-((2-(trimethylsilyl)ethoxy)methyl)-1,1′,2′,3-tetrahydrospiro[indene-2,3′-pyrrolo[2,3-b]pyridine]-5-ylcarbamate
CAS:Pureza:96%Peso molecular:481.66799931,3,5,7-Tetravinyltetramethylcyclotetrasiloxane
CAS:<p>S16500 - 1,3,5,7-Tetravinyltetramethylcyclotetrasiloxane</p>Fórmula:C12H24O4Si4Pureza:97%Cor e Forma:Liquid, ClearPeso molecular:344.663,7-Dibromo-5,5-dimethyl-5H-dibenzo[b,d]silole
CAS:Fórmula:C14H12Br2SiPureza:98%Cor e Forma:SolidPeso molecular:368.143Pentafluorophenypropylltrimethoxysilane
CAS:<p>S25252 - Pentafluorophenypropylltrimethoxysilane</p>Fórmula:C12H15F5O3SiPureza:98%Cor e Forma:Liquid, ClearPeso molecular:330.326Ref: 10-F844887
1g167,00€5g451,00€10g729,00€25g1.467,00€50g2.144,00€100mg56,00€250mg74,00€500mg113,00€[2-Chloro-3-methyl-4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)phenoxy]triisopropylsilane
CAS:Pureza:98%Peso molecular:424.89001461-((2-(TRIMETHYLSILYL)ETHOXY)METHYL)-1H-PYRROLO[2,3-B]PYRIDINE
CAS:Fórmula:C13H20N2OSiPureza:97%Peso molecular:248.4013-((2,5-Dichloro-7-((2-(trimethylsilyl)ethoxy)methyl)-7H-pyrrolo[2,3-d]pyrimidin-4-yl)amino)propan-1-ol
Pureza:98%Peso molecular:391.373-(4,4,5,5-Tetramethyl-1,3,2-dioxaborolan-2-yl)-1-[tris(1-methylethyl)silyl]-1H-pyrrole
CAS:Fórmula:C19H36BNO2SiPureza:97%Cor e Forma:SolidPeso molecular:349.45-BROMO-4-FLUORO-1-(TRIISOPROPYLSILANYL)-7-AZAINDOLE
CAS:Fórmula:C16H24BrFN2SiPureza:98%Peso molecular:371.369Tris(trimethylsiloxy)phenylsilane
CAS:<p>S21150 - Tris(trimethylsiloxy)phenylsilane</p>Fórmula:C15H32O3Si4Pureza:98%Cor e Forma:Clear to straw liquidPeso molecular:372.758

