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Cyano-, Nitrile-

Cyano-, Nitrile-

Cyano and nitrile compounds are organic molecules that contain cyano (C≡N) or nitrile groups in their structure, characterized by the presence of nitrogen. These groups play important roles in various chemical reactions and industrial applications. In this category, you will find a wide range of cyano and nitrile compounds, ranging from simple to complex structures. At CymitQuimica, we offer high-quality cyano and nitrile compounds tailored to meet research and industrial needs. Our compounds are suitable for a variety of synthesis and analytical applications.

Found 9687 products of "Cyano-, Nitrile-"

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  • 4-Cyanobenzylamine HCl

    CAS:

    4-Cyanobenzylamine HCl is a degradable polymer that has been shown to inhibit colonic adenocarcinoma in mice. This compound was synthesized by the reaction of 4-cyanobenzylamine with 3-mercaptopropionic acid and was characterized using IR, 1H NMR, and 13C NMR spectroscopy. It also showed an inhibitory effect on the proliferation of human colon cancer cells. The polymer was found to gel when mixed with different concentrations of acrylamide and methylene bisacrylamide. Gelation occurred at a lower concentration of acrylamide than the amount used in previous studies. This may be due to its functional groups and morphology, which could have contributed to the inhibition of cell growth.

    Formula:C8H8N2·HCl
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:168.62 g/mol

    Ref: 3D-FC29527

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  • Cyanodibenzylamine

    CAS:

    Cyanodibenzylamine is a synthetic, pharmaceutical preparation. It is an amine that undergoes nucleophilic attack by an amide to form a cyanoguanidine. Cyanodibenzylamine can be used as a stabilizer and additive in pharmaceutical preparations. It also has the ability to bind metal hydroxides, which may be due to the presence of basic fibroblast growth factor and isoquinoline compound. Cyanodibenzylamine is also used as a polymerization initiator in organic chemistry, with hydrocarbon solvents such as benzene or toluene as its solvent.

    Formula:C15H14N2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:222.29 g/mol

    Ref: 3D-FC67317

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  • 4-Hydroxyphenylacetonitrile

    CAS:

    4-Hydroxyphenylacetonitrile (HPA) is a chemical compound that belongs to the group of nitriles. It is a precursor to the pigment sinalbin, which is found in corynebacterium and related bacteria. HPA has been shown to have an apoptotic effect on human cells, which may be due to its ability to inhibit protein synthesis and induce DNA fragmentation. The synthetic pathway for HPA starts with the conversion of L-phenylalanine into 4-hydroxyphenylpyruvic acid by a wild-type strain or bacterial strain. The 4-hydroxyphenylpyruvic acid is then converted into 4-hydroxybenzaldehyde through polymerase chain reactions or expression plasmids in corynebacterium glutamicum. This molecule can then be transformed into HPA by hydrolysis with hydrochloric acid or enzymatic activity. HPA has also been shown to stimulate

    Formula:C8H7NO
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:133.15 g/mol

    Ref: 3D-FH24478

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  • 4-Amino-2-cyanotoluene

    CAS:

    4-Amino-2-cyanotoluene is a quinazoline compound that inhibits the synthesis of thymine, which is necessary for DNA replication. This compound binds to the enzyme thymidylate synthetase, thereby inhibiting the synthesis of thymine. The inhibitory effect has been shown in a study using calf thymus DNA. 4-Amino-2-cyanotoluene also inhibits the synthesis of other nucleic acids such as adenine and guanine.

    Formula:C8H8N2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:132.16 g/mol

    Ref: 3D-FA55035

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  • 2-Cyanocinnamic acid

    CAS:

    2-Cyanocinnamic acid is a fatty acid that has been shown to inhibit the synthesis of proteins. It binds to cytochrome c oxidase, inhibiting mitochondrial respiration and electron transport, leading to decreased ATP production. 2-Cyanocinnamic acid is not easily transported out of mitochondria, which leads to its accumulation in the mitochondrial matrix. This accumulation causes synergistic inhibition with glutamate, leading to a decrease in ATP production and an increase in intracellular levels of reactive oxygen species (ROS). The use of 2-cyanoacrylic acid as a mitochondrial transport inhibitor has been proposed for the treatment of obesity and diabetes.
    2-Cyanocinnamic acid also inhibits fatty acid uptake by binding to the protein translocase at the outer membrane of cells. This binding prevents monomers from entering the cell, where they are broken down by beta oxidation and converted into acetyl-CoA, which can be used for energy production or stored as triglycer

    Formula:C10H7NO2
    Purity:Min. 95%
    Molecular weight:173.17 g/mol

    Ref: 3D-FC66231

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  • 4-Cyanocinnamic acid

    CAS:

    4-Cyanocinnamic acid is a fatty acid that has been shown to be a substrate for the bacterial enzyme cinnamate 4-hydroxylase. The molecular weight of this compound is 136.16 g/mol, and it has a constant boiling point of 206°C. It can be synthesized from phenylacetic acid and p-coumaric acid using a transesterification reaction. This compound is reactive with carbonyl groups, which makes it useful in the detection of gram-positive bacteria by fluorescent probes or fluorescent dyes. 4-Cyanocinnamic acid is unreactive with esters of carboxylic acids, such as methyl esters, making it useful for the determination of fatty acids in isolates.

    Formula:C10H7NO2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:173.17 g/mol

    Ref: 3D-FC41613

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  • 2-Cyanobenzamide

    CAS:

    2-Cyanobenzamide is a corrosion inhibitor that is used in the electrochemical industry to protect metals from corrosion. It has been shown to be suitable for use as a corrosion inhibitor in salt water and other corrosive environments. 2-Cyanobenzamide has been shown to have light sensitive properties, which is why it should not be exposed to direct light or stored in dark containers. It also inhibits enzymes that are involved in the production of reactive oxygen species (ROS) such as superoxide anion and hydrogen peroxide. The reaction of 2-cyanobenzamide with aluminium, sodium sulfide, and polymeric matrices has also been studied extensively.
    2-Cyanobenzamide can be synthesized by reacting benzoyl chloride with ammonia and cyanogen bromide. This reaction produces a mixture of mono-, di-, tri-, and tetramers of 2-cyanobenzamide. These products can then be separated using analytical methods such as

    Formula:C8H6N2O
    Purity:Min. 95%
    Molecular weight:146.15 g/mol

    Ref: 3D-FC67714

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  • 2-Hydroxy-4-nitrobenzonitrile

    CAS:

    2-Hydroxy-4-nitrobenzonitrile is a nitrile derivative that has an antibacterial activity. This compound interacts with the pyochelin, a siderophore in Pseudomonas aeruginosa. The antibiotic inhibits the uptake of pyochelin by the bacteria and causes cell death by inhibiting the synthesis of proteins necessary for bacterial growth. 2-Hydroxy-4-nitrobenzonitrile can be used as a potential stabilizer for materials such as polystyrene and polyurethane which are susceptible to degradation by hydrolysis or oxidation. In addition, this compound is also useful in gram-negative bacterium due to its ability to inhibit their growth by binding to their ribosomes. The conformational studies have been shown to be important for understanding the biological properties of this molecule.

    Formula:C7H4N2O3
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:164.12 g/mol

    Ref: 3D-FH70360

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  • Benzylamine

    CAS:

    Substrate of benzylamine oxidase and monoamine oxidase B

    Formula:C7H9N
    Purity:Min. 98.0 Area-%
    Color and Shape:Colorless Slightly Yellow Clear Liquid
    Molecular weight:107.15 g/mol

    Ref: 3D-FB09449

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  • 4-Aminophenylacetonitrile

    CAS:

    4-Aminophenylacetonitrile is a molecule that is structurally similar to nitrobenzene. 4-Aminophenylacetonitrile has been shown to be an efficient method for inhibiting faecalis growth and secretory phospholipase A2 (sPLA2) activity in vitro. It also inhibits the population growth of E. coli in vivo, which can be attributed to its ability to inhibit the enzyme catalysed by hydrogen bond formation.

    Formula:C8H8N2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:132.16 g/mol

    Ref: 3D-FA67924

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  • 2-(4-Methoxyphenoxy)acetonitrile

    CAS:

    2-(4-Methoxyphenoxy)acetonitrile is a chemical compound that is used to synthesize acetobromoglucose. It undergoes transformation and condensation reactions with acetobromoglucose to form 4-methoxyaceto bromoglucose.

    Formula:C9H9NO2
    Purity:Min. 95%
    Molecular weight:163.17 g/mol

    Ref: 3D-FM36029

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  • 3-Bromobenzylamine

    CAS:

    3-Bromobenzylamine is a chemical compound that belongs to the class of amines. It is used as an intermediate in organic synthesis, and its derivative 3-bromobenzylamine hydrochloride is used in pharmaceuticals as a heart stimulant. 3-Bromobenzylamine can be synthesized by reacting an amine with phosgene and then brominating it. This chemical has been shown to have inhibitory activity against cancer cells and can be used for the treatment of cancer. 3-Bromobenzylamine has also been shown to inhibit the growth of bacteria, fungi, and viruses in vitro. 3-Bromobenzylamine may also be useful for treating psoriasis due to its ability to inhibit prostaglandin synthesis.

    Formula:C7H8BrN
    Purity:Min. 95%
    Color and Shape:Colorless Powder
    Molecular weight:186.04 g/mol

    Ref: 3D-FB10708

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  • 2-[1,2,4]Triazol-1-yl-benzylamine

    CAS:

    2-[1,2,4]Triazol-1-yl-benzylamine is a chemical compound that has been shown to be an excellent reagent in organic synthesis. It is also used as a building block for the synthesis of compounds related to pharmaceuticals, pesticides and other speciality chemicals. 2-[1,2,4]Triazol-1-yl-benzylamine is a versatile intermediate that can be used in the synthesis of complex compounds with good yields and high purity.

    Formula:C9H10N4
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:174.2 g/mol

    Ref: 3D-FT50933

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  • 2-Nitrobenzylamine hydrochloride

    CAS:

    2-Nitrobenzylamine hydrochloride is a compound that has been shown to have cancer-fighting properties. It inhibits the synthesis of proteins necessary for the proliferation of cancer cells, but it does not affect the synthesis of proteins in healthy cells. This drug is used to diagnose and treat certain types of cancers, such as lymphoma and leukemia. 2-Nitrobenzylamine hydrochloride can be modified by genetic engineering techniques to specifically target cancer cells, which may help with the treatment of other types of diseases in the future. It is believed that this drug will be useful for treating cancers that are resistant to chemotherapy or radiation therapy, as well as those that are caused by mutations in DNA.

    Formula:C7H9ClN2O2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:188.61 g/mol

    Ref: 3D-FN69987

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  • N-Boc-4-cyanopiperidine

    CAS:

    N-Boc-4-cyanopiperidine is a synthetic compound that has been used as a competitive inhibitor in the study of biochemistry and neurochemistry. It has been shown to inhibit ligand binding to calcium channels, which are proteins that regulate the flow of calcium ions into cells. N-Boc-4-cyanopiperidine also inhibits the production of prostaglandins, which are chemicals that promote inflammation. This drug has been investigated for its possible use in treating neuropathic pain, since it inhibits voltage-gated sodium channels and potassium channels.

    Formula:C11H18N2O2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:210.27 g/mol

    Ref: 3D-FB05720

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  • 5-Cyanophthalide

    CAS:

    5-Cyanophthalide is an inorganic acid that is a white solid. It has a molecular weight of 114.07 g/mol and a melting point of -43 degrees Celsius. 5-Cyanophthalide can be synthesized by reacting 5-carboxyphthalide with chlorine gas in the presence of an inert solvent and heat. The product is then purified by crystallization or recrystallization. The biological properties of 5-cyanophthalide are unknown, but it has been shown to have amide and chloride groups on either side of the molecule's carbon backbone. Mass spectrometry reveals that this compound exists as an enantiomer, meaning that it exists as two mirror images that are not superimposable on each other. This means there are two different forms: one left-handed and one right-handed form.

    Formula:C9H5NO2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:159.14 g/mol

    Ref: 3D-FC20660

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  • Cyano ethyl acetamidate

    CAS:

    Cyano ethyl acetamidate is a synthetic compound that is used in the production of immunosorbent assays. It is a reaction yield and amide. This product has been shown to be an effective amination reagent in deionized water and wastewater, as well as a powerful monoclonal antibody producer. Cyano ethyl acetamidate has also been shown to be reactive with chloride and hydrogen chloride, which can be used for the synthesis of nitro compounds.

    Formula:C5H8N2O
    Purity:Min. 95%
    Color and Shape:Clear Colourless Liquid
    Molecular weight:112.13 g/mol

    Ref: 3D-FC37261

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  • 3-Chloro-4-methoxybenzonitrile

    CAS:

    3-Chloro-4-methoxybenzonitrile is a chemical compound that can be used as a reactant, reagent, or building block in the synthesis of other chemicals. It is an important intermediate for the production of pharmaceuticals, pesticides and dyes. 3-Chloro-4-methoxybenzonitrile is also being investigated for use in the manufacture of photoresists for semiconductor device fabrication. This chemical is listed on the Chemical Abstracts Service registry with CAS number 102151-33-7.

    Formula:C8H6ClNO
    Purity:Min. 95%
    Color and Shape:Solid
    Molecular weight:167.59 g/mol

    Ref: 3D-FC69825

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  • N-Cyanopyrrolidine

    CAS:

    N-Cyanopyrrolidine is a compound that targets enzymes, such as histone deacetylases (HDACs) and protein kinase C. It is a chemical ionization reagent that reacts with hydroxyl groups on the target molecule. This leads to the formation of covalent bonds between the target and the reagent, which results in an irreversible reaction. N-Cyanopyrrolidine has been shown to have antidiabetic effects in diabetic patients and hiv infection by decreasing levels of glucose in the blood. It also inhibits cancer cell growth by inhibiting dpp-IV, which is an enzyme that causes cancer cells to proliferate.

    Formula:C5H8N2
    Purity:Min. 95%
    Color and Shape:Clear Liquid
    Molecular weight:96.13 g/mol

    Ref: 3D-FC67509

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  • 2-Cyanobenzylamine hydrochloride

    CAS:

    2-Cyanobenzylamine hydrochloride is a chemical building block and intermediate that can be used in the synthesis of many different compounds. It is also a useful reagent for reactions involving nitro compounds. 2-Cyanobenzylamine hydrochloride is a fine chemical that is registered with the Chemical Abstract Service (CAS No. 1134529-25-1). It has been identified as a versatile building block and useful intermediate in the synthesis of pharmaceuticals, agrochemicals, and other organic chemicals.

    Formula:C8H8N2·HCl
    Purity:Min. 95%
    Color and Shape:White/Off-White Solid
    Molecular weight:168.62 g/mol

    Ref: 3D-FC66712

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  • 2-Chloro-5-methylbenzonitrile

    CAS:

    2-Chloro-5-methylbenzonitrile (2C5MB) is a versatile building block that is used in the production of fine chemicals, specialty chemicals, and pharmaceuticals. It is also used as a reagent for organic synthesis and as a speciality chemical. 2C5MB can be used in the synthesis of various complex compounds and research chemicals. The compound has been shown to have high reactivity and has been used as a reaction component or scaffold for the synthesis of other products.

    Formula:C8H6ClN
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:151.59 g/mol

    Ref: 3D-FC67380

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  • 2-Cyanoethyltriethoxysilane

    CAS:

    2-Cyanoethyltriethoxysilane is a cross-linking agent that is used in coatings and adhesives. It has been shown to have an adsorption mechanism that is dependent on the pH of the solution, with a maximum adsorption at pH 3.2 and a minimum at pH 11. The rate of adsorption is also dependent on the concentration of 2-cyanoethyltriethoxysilane, with higher concentrations leading to faster adsorption rates. Kinetic data for 2-cyanoethyltriethoxysilane has been shown using gravimetric analysis to show that it has an adsorption rate constant of 1.0 × 10^4 s^(-1) at pH 3.2 and 6.5 × 10^4 s^(-1) at pH 11, which are independent of the concentration of this molecule in solution. Pluronic P123 was used as a model polymer

    Formula:C9H19NO3Si
    Purity:Min. 97 Area-%
    Color and Shape:Powder
    Molecular weight:217.34 g/mol

    Ref: 3D-FC62904

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  • 3-Cyano-2-hydroxypyridine

    CAS:

    3-Cyano-2-hydroxypyridine is an inhibitor of the noradrenaline transporter, which is a type of l-type calcium channel. 3-Cyano-2-hydroxypyridine has been shown to be a potent inhibitor of the noradrenaline transporter. It inhibits the binding of neurotransmitters to their receptors by blocking active methylene sites on the transporter molecule. This drug also has a cavity that can accommodate bulky inhibitor molecules, making it more difficult for these inhibitors to bind to the active site and compete with neurotransmitters for uptake. 3Cyano-2-hydroxypyridine also inhibits nitric oxide synthase, which may provide anti-tumor activity as well as inhibit tumor cell growth. The inhibitory effect of this drug is due to structural studies that have revealed hydrogen bonding interactions with the drug's nitrogen and oxygen atoms.

    Formula:C6H4N2O
    Purity:Min. 95%
    Color and Shape:Yellow To Brown Solid
    Molecular weight:120.11 g/mol

    Ref: 3D-FC09747

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  • N-(2-Cyanophenyl)-2-chloropropanamide

    CAS:

    Please enquire for more information about N-(2-Cyanophenyl)-2-chloropropanamide including the price, delivery time and more detailed product information at the technical inquiry form on this page

    Purity:Min. 95%

    Ref: 3D-FC169928

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  • 2-(Aminomethylene)phenylsulphonyl acetonitrile

    CAS:
    2-(Aminomethylene)phenylsulphonyl acetonitrile is an allylating agent. It reacts with hydrochloric acid to form allyl isothiocyanate, which can be used for the synthesis of thiazoline derivatives. 2-(Aminomethylene)phenylsulphonyl acetonitrile is a reagent that has been used in multicenter trials to study the effects of allylation on cancerous cells.
    Formula:C9H8N2O2S
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:208.24 g/mol

    Ref: 3D-FA169799

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  • 2,4-Dichlorobenzenesulphonylacetonitrile

    CAS:

    Please enquire for more information about 2,4-Dichlorobenzenesulphonylacetonitrile including the price, delivery time and more detailed product information at the technical inquiry form on this page

    Purity:Min. 95%

    Ref: 3D-FD168895

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  • 2-(4-Chlorobenzenesulphonyl)acetonitrile

    CAS:

    2-(4-Chlorobenzenesulphonyl)acetonitrile is a reactive chemical that is synthesized from chloroform and acetonitrile. It can be used to synthesize various medicines such as analgesics, muscle relaxants, and x-ray contrast agents. 2-(4-Chlorobenzenesulphonyl)acetonitrile has minimal effects on the human body and is not known to cause any major health problems. It is metabolized in the liver by oxidation of the methyl group to form 4-chlorobenzene sulfonic acid, which is excreted through urine. The chlorine atom in this molecule has a trigonal bipyramidal geometry with a bond length of 1.82 Å, which can be seen in x-ray crystallography studies.

    Formula:C8H6ClNO2S
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:215.66 g/mol

    Ref: 3D-FC36027

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  • 2-Cyano-5-fluoropyridine

    CAS:

    2-Cyano-5-fluoropyridine is a potential antitubercular agent that has shown penetrability in the central nervous system and activity against Mycobacterium tuberculosis. It is orally active at low doses, and has been shown to be an effective inhibitor of mycobacterial growth and lipid synthesis. In addition, this compound also has antimycobacterial activity against M. avium complex and M. ulcerans, and is a potent inhibitor of β-amyloid aggregation.

    Formula:C6H3FN2
    Purity:Min. 95%
    Molecular weight:122.1 g/mol

    Ref: 3D-FC33069

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  • Cyanoguanidine

    CAS:

    Cyanoguanidine is an antimicrobial agent that inhibits the growth of bacteria by interfering with the synthesis of folic acid. This inhibits the production of DNA and protein, thereby leading to cell death. Cyanoguanidine has been shown to be effective in a model system for blood sampling and has been used as a pharmacological treatment for infectious diseases such as malaria. The optimum concentration for cyanoguanidine is between 5-20 mM, depending on the bacterial species. It can be synthesized from sulfamoyl chloride and dicyandiamide, which are commercially available chemicals. The analytical method for determining the inhibitory effects of cyanoguanidine on bacterial growth is plasma mass spectrometry.

    Formula:C2H4N4
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:84.08 g/mol

    Ref: 3D-FC20647

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  • Cyanomethylenetributylphosphorane

    CAS:

    Cyanomethylenetributylphosphorane (CMTP) is an agent used for the diagnosis of body formation. It is a chemical compound that can be used to produce images of tissue and organs by detecting apoptosis, or programmed cell death. CMTP binds to the glucose-dependent insulinotropic polypeptide receptor (GIPR), stimulating the release of insulin in the pancreas. CMTP also has therapeutic potential for metabolic disorders, as it has been shown to reduce triglycerides and increase HDL cholesterol levels in human serum. CMTP is synthesized from trifluoroacetic acid, which is then reacted with a cyclic peptide containing an amino acid derivative and 1-methyl-2-pyrrolidinone. This reaction produces a molecule with one free amino group at one end and two free carboxylic acid groups at the other end. The molecule can be reacted with epidermal growth factor (EGF) or insulin to

    Formula:C14H28NP
    Purity:Min. 95%
    Color and Shape:Yellow To Dark Brown Clear Liquid
    Molecular weight:241.35 g/mol

    Ref: 3D-FC60321

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  • 2,4,6-Trimethylbenzonitrile

    CAS:

    2,4,6-Trimethylbenzonitrile (TMBN) is a reactive unsaturated ketone that reacts with phosphorus pentachloride to form the corresponding chloroform. It is used in nucleophilic substitution reactions and can be hydrolyzed by hydrochloric acid to form an n-oxide. The reaction mechanism of TMBN with phosphorus pentachloride has been studied using molecular modeling and NMR spectroscopy. TMBN can be converted into an oxide, which can react with hydrogen chloride to form the corresponding chloroform. Reaction products include the 2,4,6-trichlorobenzonitrile (TCBN), which is a carcinogen.

    Formula:C10H11N
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:145.2 g/mol

    Ref: 3D-FT69847

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  • Methyl-2-isocyanoisobutyrate

    CAS:

    Please enquire for more information about Methyl-2-isocyanoisobutyrate including the price, delivery time and more detailed product information at the technical inquiry form on this page

    Formula:C9H9NO2
    Purity:Min. 95%
    Molecular weight:127.14 g/mol

    Ref: 3D-FM02737

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  • Boc-2-cyano-D-phenylalanine

    CAS:

    Please enquire for more information about Boc-2-cyano-D-phenylalanine including the price, delivery time and more detailed product information at the technical inquiry form on this page

    Formula:C15H18N2O4
    Purity:Min. 95%
    Molecular weight:290.31 g/mol

    Ref: 3D-FB49762

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  • 3-Cyanoethylbenzoic acid

    CAS:

    3-Cyanoethylbenzoic acid is an anthropogenic compound that is produced by the Friedel-Crafts reaction between benzoyl chloride and acrylonitrile in the presence of a base. 3-Cyanoethylbenzoic acid is used as a solvent for chromatographic methods, such as gradient elution, ion exchange, and reversed phase. 3-Cyanoethylbenzoic acid has been used to determine the optical purity of benzoate salts and amides. This compound can be taken orally in solid oral dosage form or enterically in liquid oral dosage form. 3-Cyanoethylbenzoic acid interacts with other drugs that are metabolized by CYP3A4, such as erythromycin, to produce an active metabolite (N-desmethyldesipramide).

    Formula:C10H9NO2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:175.18 g/mol

    Ref: 3D-FC05759

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  • Ethyl 2,3-dicyanopropionate

    CAS:

    Ethyl 2,3-dicyanopropionate is a white crystalline solid that is soluble in organic solvents. It has the molecular formula CHClNOS and the molecular weight of 138.1 g/mol. This compound has a melting point of 92 °C and can be purchased as a mixture of cis and trans isomers. The cis form melts at 93 °C and the trans form melts at 88 °C. Ethyl 2,3-dicyanopropionate is synthesized from chlorobenzene by dehydrating it with hydrochloric acid in an organic solvent. It can also be prepared by reacting ethyl cyanoacetate with ammonia in an inert atmosphere. Impurities may include chloride, sulfoxide, or imine.

    Formula:C7H8N2O2
    Purity:Min. 95%
    Molecular weight:152.15 g/mol

    Ref: 3D-FE22954

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  • 3-Cyano-2-methylphenylboronic acid

    CAS:

    3-Cyano-2-methylphenylboronic acid is a high quality compound that can be used as a reagent, intermediate, or building block in the synthesis of complex compounds. This chemical is also useful as a speciality chemical and research chemical. 3-Cyano-2-methylphenylboronic acid has versatile uses in organic synthesis due to its versatility in reactions and building blocks.

    Formula:C8H8BNO2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:160.97 g/mol

    Ref: 3D-FC76289

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  • Phycocyanobilin

    CAS:

    Phycocyanobilin is a chromophore found in blue-green algae and cyanobacteria. It is a component of the holoprotein phycocyanin and aids in the harvesting of light energy. This biliverdin derivative is converted to phycocyanorubin by biliverdin reductase in mammalian cells. The addition of phycocyanobilin to human cells leads to potent inhibition of NADPH oxidase. It also binds to human serum albumin (HSA). Structurally, Phycocyanin shares many similarities to bilirubin and biliverdin.

    Formula:C33H38N4O6
    Purity:Min. 95 Area-%
    Color and Shape:Blue Powder
    Molecular weight:586.68 g/mol

    Ref: 3D-FP31496

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