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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 9677 products of "Cyano-, Nitrile-"

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  • Bis(2-cyanoethyl) Ether

    CAS:
    Purity:98.0%
    Color and Shape:Liquid
    Molecular weight:124.14299774169922

    Ref: 10-F341790

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  • (2,3-Dichlorophenyl)acetonitrile

    CAS:

    (2,3-Dichlorophenyl)acetonitrile is a fine chemical that is useful as a building block in the synthesis of more complex compounds. It has been used in research as a reagent and as a speciality chemical. (2,3-Dichlorophenyl)acetonitrile reacts with many different types of compounds to form new molecules. This intermediate can be used in the synthesis of many different types of compounds and also serves as an important scaffold for larger molecules.

    Formula:C8H5Cl2N
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:186.04 g/mol

    Ref: 3D-FD71088

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  • 4,4'-Azobis(4-cyanovaleric acid)

    CAS:

    Azobis(4-cyanovaleric acid) is a chemical compound that has reactive functional groups. It is a particle that is soluble in acetate extract and hydrochloric acid. The synthesis of Azobis(4-cyanovaleric acid) involves the reaction of 4-cyanoacrylic acid with 2,2'-azobis(2-methylpropionitrile). It is used as an intermediate in the preparation of polymers. Azobis(4-cyanovaleric acid) is used for the treatment of infectious diseases such as tuberculosis and malaria. The production of chain reactions with other molecules makes this chemical reactive and unstable. Azobis(4-cyanovaleric acid) also reacts with nucleophilic groups, such as hydroxyl groups, to form a covalent bond. This process can be reversed by adding a strong base or oxidant.

    Formula:C12H16N4O4
    Purity:Min. 95 Area-%
    Color and Shape:Powder
    Molecular weight:280.28 g/mol

    Ref: 3D-FD155718

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  • 4-Cyano-2-hydroxybenzaldehyde

    CAS:

    4-Cyano-2-hydroxybenzaldehyde is a high quality chemical that can be used as a reagent and intermediate in the synthesis of complex compounds. It is also an important building block in the synthesis of fine chemicals. 4-Cyano-2-hydroxybenzaldehyde has been used as a versatile building block in the synthesis of organic compounds, useful scaffolds in medicinal chemistry, and reactive intermediates. It has also been shown to have anti-inflammatory properties and may be a potential treatment for inflammatory bowel disease.

    Formula:C8H5NO2
    Purity:Min. 95%
    Molecular weight:147.13 g/mol

    Ref: 3D-FC41214

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  • 2-Cyanoacetamide

    CAS:

    2-Cyanoacetamide is an organic compound that is used in pharmaceutical preparations. It reacts with malonic acid to form a dioxime, which is a precursor of various drugs. The optimum concentration for the reaction to occur is at 10% (w/v). The reaction mechanism has not been fully elucidated and it involves the transfer of nitrogen from an amide group to a carbonyl group. 2-Cyanoacetamide has shown anti-angiogenic effects in mice by inhibiting the expression of Mcl-1 protein, which is involved in the regulation of apoptosis and inflammation. This drug also has biological functions as a precursor for dopamine, which helps regulate motor and cognitive functions.

    Formula:C3H4N2O
    Purity:Min. 98%
    Color and Shape:White Off-White Powder
    Molecular weight:84.08 g/mol

    Ref: 3D-FC54903

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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-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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  • 1-Adamantyl acetonitrile

    CAS:

    1-Adamantyl acetonitrile is a trifluoroacetic acid derivative that is used in the synthesis of 4-aminoantipyrine, chlorides, acid chlorides, and acetonitrile. 1-Adamantyl acetonitrile can be used to produce a variety of pharmaceuticals, such as aliphatic carboxylic acids, aldehydes, and amide. It can also serve as a reactant for reactions with alcohols or amines.

    Formula:C12H17N
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:175.27 g/mol

    Ref: 3D-FA67015

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  • 4-Cyanobenzamide

    CAS:

    4-Cyanobenzamide is a naphthalene derivative that is both reactive and intramolecular. It has been shown to react with the amino group of peptides, forming a ruthenium complex. The functional groups are acceptors and donors that can be used in assays for the detection of anions or cations. 4-Cyanobenzamide reacts with water to release hydrogen gas, which can be used to measure its hydration ability. This compound has been synthesized using solid-phase synthesis and it has amide bonds that vibrate at a specific frequency.

    Formula:C8H6N2O
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:146.15 g/mol

    Ref: 3D-FC66173

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  • 3-Cyano-5-bromopyridine

    CAS:

    3-Cyano-5-bromopyridine is an enantiopure organic compound that belongs to the group of halides. It is a functional group that is a reagent in organic synthesis, and it can be used as a precursor to dyestuffs. 3-Cyano-5-bromopyridine has been shown to have antimicrobial activity against bacteria and fungi. It also has a metabotropic glutamate receptor subtype selective affinity, which may be due to its ability to bind with glutamate in complex molecules.

    Formula:C6H3BrN2
    Purity:Min. 95%
    Color and Shape:White To Beige To Light (Or Pale) Yellow Solid
    Molecular weight:183.01 g/mol

    Ref: 3D-FC03449

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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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  • 2,5-Dimethoxybenzonitrile

    CAS:

    2,5-Dimethoxybenzonitrile is a polymerized organic compound that belongs to the class of benzene compounds. It is a monomer with two methyl groups on either side of the benzene ring. 2,5-Dimethoxybenzonitrile has been studied in terms of its transition and optimization properties using techniques such as IR and NMR spectroscopy. The frequencies of the chemical bonds have been analyzed, and it has been found that the molecule is centrosymmetric. 2,5-Dimethoxybenzonitrile can also be used to form polymers with other molecules by linking them together through covalent bonds.

    Formula:C9H9NO2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:163.17 g/mol

    Ref: 3D-FD64139

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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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  • 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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  • (S,E)-3-(6-Bromopyridin-2-yl)-2-cyano-N-(1-phenylethyl)acrylamide

    CAS:
    (S,E)-3-(6-Bromopyridin-2-yl)-2-cyano-N-(1-phenylethyl)acrylamide (MBI-23) is a potential antineoplastic agent that has been shown to induce regression of bladder cancer in mice. MBI-23 induces apoptosis by inhibiting the proliferation of cancer cells and inducing differentiation of cancer stem cells. It is also shown to inhibit tumor growth and progression in glioma and prostate cancer models. MBI-23 binds to the KDR receptor subtype, which is activated by organic acids and inhibited by inorganic compounds. This binding leads to constitutive activation of the KDR receptor, thereby inducing apoptosis. The tautomers and stereoisomers of MBI-23 have not been fully elucidated yet.
    Formula:C17H14ON3Br
    Purity:Min. 98 Area-%
    Color and Shape:White Powder
    Molecular weight:356.22 g/mol

    Ref: 3D-FB34118

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  • Xylene cyanol

    CAS:

    Xylene cyanol is a chemical compound that belongs to the group of phenols. It has been shown to be active in vitro against human skin cancer cells, and induces cell lysis. Xylene cyanol has also been found to bind to the BCR-ABL kinase domain, which is an enzyme that plays a crucial role in the development of leukemia and other autoimmune diseases. Xylene cyanol binds to dna binding domains on the protein surface and forms an adduct with bcr-abl kinase, which inhibits its activity. This inhibition prevents activation of this enzyme and leads to cell death by preventing DNA synthesis.

    Formula:C25H27N2O7S2•Na
    Purity:Min. 90%
    Color and Shape:Powder
    Molecular weight:554.61 g/mol

    Ref: 3D-FX158238

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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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  • (Cyanomethyl)urea

    CAS:

    Cyanomethyl)urea is a fine chemical that belongs to a class of compounds known as ureas. It is used as a versatile building block in the synthesis of more complex compounds, as a research chemical and as an intermediate. It can be used to synthesize pharmaceuticals, pesticides, and other chemicals. Cyanomethyl)urea is used in the production of polyurethane foams, which are commonly found in mattresses, furniture upholstery and insulation.

    Formula:C3H5N3O
    Purity:Min. 95%
    Color and Shape:Brown Powder
    Molecular weight:99.09 g/mol

    Ref: 3D-FC149025

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  • 2-Cyano-3-fluoro-4-bromo aniline

    CAS:

    2-Cyano-3-fluoro-4-bromo aniline is a plant growth regulator that can be used to prevent and control the spread of viral diseases in plants. 2-Cyano-3-fluoro-4-bromo aniline inhibits the replication of influenza virus strains by binding to the viral coat protein. It also has been shown to inhibit proteolytic enzymes when applied as a coating on particles. The main mechanism of this compound is through its ability to bind to regulatory proteins, which prevents them from binding with other regulatory proteins and activating transcription factors. The expression profile suggests that this compound may regulate the expression of genes involved in plant development, cell division, and response to stress.

    Formula:C7H4BrFN2
    Purity:Min. 95%
    Color and Shape:Powder
    Molecular weight:215.02 g/mol

    Ref: 3D-FC30099

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