
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 9624 products of "Cyano-, Nitrile-"
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2,4,6-Trimethylbenzonitrile
CAS:<p>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.</p>Formula:C10H11NPurity:Min. 95%Color and Shape:PowderMolecular weight:145.2 g/mol5-Cyanopyridine-2-carboxylic acid
CAS:<p>5-Cyanopyridine-2-carboxylic acid is a small molecule that has been found to have significant biological activity in a number of different areas, including neurotherapeutics. It is the result of a scalable synthesis and is soluble in water. The molecule has two chiral centers and can exist as four different stereoisomers (enantiomers). In vitro studies show that 5-cyanopyridine-2-carboxylic acid inhibits fatty acid uptake by blocking the proton pump, which transports lipids into cells. This compound also binds to the cytosolic protein pyrazine 2-carboxylic acid receptor 1 (PYZR1), which may provide an explanation for its effects on fatty acid uptake.</p>Formula:C7H4N2O2Purity:Min. 95%Molecular weight:148.12 g/molN-Cyano-N',S-dimethylisothiourea
CAS:<p>Please enquire for more information about N-Cyano-N',S-dimethylisothiourea including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C4H7N3SPurity:Min. 95%Molecular weight:129.18 g/molα-Acetylphenylacetonitrile
CAS:Controlled Product<p>Alpha-acetylphenylacetonitrile is a synthetic chemical compound that is used as a reagent in the analytical methods of wastewater. It has been shown to be an effective bifunctional agent for the treatment of wastewater, with fluorescence properties that can be used for detection and quantification of cyanide. Alpha-acetylphenylacetonitrile can also be used as a reagent in analytical chemistry techniques, such as gas chromatography and high performance liquid chromatography. This chemical compound has been shown to react with naphthalene to form alpha-naphthol by heating at 190 °C, which can then be used to synthesize phenacyl acetate. The acid catalyst may be either sulfuric acid or hydrochloric acid.</p>Formula:C10H9NOPurity:Min. 95%Molecular weight:159.18 g/mol3-Cyanoethylbenzoic acid
CAS:<p>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).</p>Formula:C10H9NO2Purity:Min. 95%Color and Shape:PowderMolecular weight:175.18 g/molEthyl-2-ethoxy-1-[[(2'-cyanobiphenyl-4-yl) methyl] benzimidazole-7-carboxylate
CAS:<p>Candesartan is a selective angiotensin II receptor antagonist that inhibits the binding of angiotensin II to its receptors, which in turn decreases the activity of angiotensin-converting enzyme. Candesartan cilexetil is an ester prodrug that has been shown to be effective in the treatment of high blood pressure. In the crystalline form, candesartan cilexetil is a white powder with a melting point of 130–135 °C and a solubility in water of >1 g/L. The molecular weight of candesartan cilexetil is 393.8 g/mol and it has a molecular formula C17H21NO2S. The chemical structure consists of two benzimidazole rings coupled together through an ethyl-2-ethoxy linker and attached to a carboxylate group on one end and an amide group on the other</p>Formula:C26H23N3O3Purity:Min. 95%Molecular weight:425.48 g/mol1,6-Bis(cyano-guanidino)hexane
CAS:<p>1,6-Bis(cyano-guanidino)hexane is a bactericidal agent that can be used to remove bacteria from water. The compound has been shown to have a bactericidal activity against Gram-positive and Gram-negative bacteria in concentrations of 100 mg/L and 200 mg/L, respectively. 1,6-Bis(cyano-guanidino)hexane has also been shown to be effective against industrial strains of Bacillus subtilis and Pseudomonas aeruginosa in concentrations of 200 mg/L. This compound is soluble in organic solvents but insoluble in deionized water. It has a viscosity of 30000 cP at 20°C and an anion charge of -1.</p>Formula:C10H18N8Purity:Min. 95%Color and Shape:PowderMolecular weight:250.3 g/mol1-Cyano-4-(dimethylamino)benzene
CAS:<p>1-Cyano-4-(dimethylamino)benzene is a molecule that has been shown to inhibit the growth of hamster v79 cells. It also inhibits the synthesis of DNA and RNA. The binding constants for this molecule have been determined to be 1.0 x 10^9 M^-1, with an n-octanol/water partition coefficient (log P) of 5.5. This molecule is soluble in nonpolar solvents and may be used as a model system for hydrogen bonding interactions or reaction mechanisms in organic chemistry. This compound contains a deuterium isotope and can be used to study the effects of hydrogen bonding on reactions in organic chemistry at high temperatures, with the use of preparative hplc.</p>Formula:C9H10N2Purity:Min. 95%Color and Shape:Beige PowderMolecular weight:146.19 g/mol3-(2-Cyanopropan-2-yl)benzoic acid
CAS:<p>Please enquire for more information about 3-(2-Cyanopropan-2-yl)benzoic acid including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C11H11NO2Purity:Min. 95%Molecular weight:189.21 g/molIsocyanomethyl resin (200-400 mesh)
<p>Please enquire for more information about Isocyanomethyl resin (200-400 mesh) including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Purity:Min. 95%Color and Shape:Powder3-Fluoro-4-hydroxybenzonitrile
CAS:<p>3-Fluoro-4-hydroxybenzonitrile is a compound with an acidic ph and a strain that is dispersive, desorptive, and polyacrylamide gel. It is a colorless liquid at room temperature. 3-Fluoro-4-hydroxybenzonitrile has been shown to react with dodecyl inorganic base and hydrochloric acid to produce 3-fluoroaniline. The localization of the reaction yield is on hydrotalcite activated by fluorine. This chemical has been shown to react at temperatures between 0°C and 140°C.</p>Formula:C7H4FNOPurity:Min. 95%Color and Shape:White PowderMolecular weight:137.11 g/mol2,2'-(Perchloro-1,2-phenylene)diacetonitrile
CAS:<p>Please enquire for more information about 2,2'-(Perchloro-1,2-phenylene)diacetonitrile including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C10H4Cl4N2Purity:Min. 95%Molecular weight:293.96 g/mol3-Cyano-2-methylphenylboronic acid
CAS:<p>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.</p>Formula:C8H8BNO2Purity:Min. 95%Color and Shape:PowderMolecular weight:160.97 g/molN-2-Cyanoethyl-Val-Leu-anilide
CAS:<p>Please enquire for more information about N-2-Cyanoethyl-Val-Leu-anilide including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C20H30N4O2Purity:Min. 95%Molecular weight:358.48 g/mol3,5-Bis(trifluoromethyl)phenylacetonitrile
CAS:<p>3,5-Bis(trifluoromethyl)phenylacetonitrile (3,5-BTFAPN) is a compound that has anticancer activity. It can be used to treat cancer by inhibiting the growth of cancer cells. 3,5-BTFAPN has been shown to be effective against some human cancer cell lines in vitro and in vivo. The drug was found to have cytotoxic effects by inducing apoptosis through changes in mitochondrial membrane potential and cytochrome c release. 3,5-BTFAPN also binds to DNA and forms adducts with guanine residues, which may explain its anticancer activity.</p>Formula:C10H5F6NPurity:Min. 98 Area-%Color and Shape:Colorless Yellow Clear LiquidMolecular weight:253.14 g/mol2,4,5-Trimethoxybenzylamine
CAS:<p>2,4,5-Trimethoxybenzylamine is a synthetic compound that can be used as a precursor to the synthesis of other chemicals. It is prepared by reacting phenol with deuterium gas in a process called amination. This reaction is followed by reductive quaternization with cyanide. 2,4,5-Trimethoxybenzylamine is often used as an intermediate for the synthesis of drugs such as tamoxifen and clonidine.</p>Formula:C10H15NO3Purity:Min. 95%Color and Shape:PowderMolecular weight:197.23 g/mol2-[4-(2-Cyanoethylthio)methyl]thiazolyl guanidine
CAS:<p>2-[4-(2-Cyanoethylthio)methyl]thiazolyl guanidine (HCTZ) is a histamine H2 receptor antagonist that belongs to the class of synthetic compounds. It is an effective anti-histamine and has been shown to inhibit acid secretion in the stomach in response to histamine. HCTZ also inhibits the release of gastric acid by blocking the action of histamine on the H2 receptor of parietal cells, which are located in the lining of the stomach. This drug is also used for treating reflux esophagitis and gastroesophageal reflux disease. Other uses include as a proton pump inhibitor for treatment of peptic ulcers, and as an adjunct therapy for ulcerative colitis. The following product details are about a company that sells organic food products:</p>Formula:C8H11N5S2Purity:Min. 98 Area-%Color and Shape:White PowderMolecular weight:241.34 g/mol4-Bromo-3-cyanoanisole
CAS:<p>4-Bromo-3-cyanoanisole is a potent inhibitor of the tyrosine kinase receptor. The functional theory behind this drug's mechanism of action is that it binds to the ATP binding site of the receptor and blocks ATP from binding, preventing downstream signaling. 4-Bromo-3-cyanoanisole has been shown to be an effective inhibitor of cancer cell proliferation. This drug has also been shown to inhibit microtubule assembly and disrupt cellular function by inhibiting protein synthesis.</p>Formula:C8H6BrNOPurity:Min. 95%Color and Shape:PowderMolecular weight:212.04 g/mol1-Boc-5-Cyano-3-hydroxymethylindole
CAS:<p>Please enquire for more information about 1-Boc-5-Cyano-3-hydroxymethylindole including the price, delivery time and more detailed product information at the technical inquiry form on this page</p>Formula:C15H16N2O3Purity:Min. 95%Molecular weight:272.3 g/molIminodiacetonitrile
CAS:<p>Iminodiacetonitrile is a chemical compound that is used in wastewater treatment. It is a nitrite-oxidizing agent that reacts with nitrite ion to form nitric acid, which can be then used to oxidize hexamethylenetetramine and iminodiacetic acid to produce ammonia and cyanide ions. Iminodiacetonitrile has an optimum pH of 7.5, so it will not react at higher or lower pH levels. This reaction occurs in the presence of hydroxide solution, hydrochloric acid, and inorganic acids such as sulfuric acid or phosphoric acid. The reaction mechanism for this process is shown below: C6H11N2O2 + HNO3 → C6H11N2O4 + H+ + NO2- C6H11N2O4 → NH3 + HCN</p>Formula:C4H5N3Purity:Min. 95%Color and Shape:Light (Or Pale) Yellow To Brown SolidMolecular weight:95.1 g/mol
