Paul, Heinz et al. published their research in Archiv der Pharmazie (Weinheim, Germany) in 1978 | CAS: 42137-24-6

4-Nitrothiophene-2-carbonitrile (cas: 42137-24-6) belongs to nitriles. Nitrile compounds can be prepared by the incorporation of a cyanide source through C–C bond formation or by dehydration of primary carboxamides. Nitrile groups in organic compounds can undergo a variety of reactions depending on the reactants or conditions. A nitrile group can be hydrolyzed, reduced, or ejected from a molecule as a cyanide ion.Name: 4-Nitrothiophene-2-carbonitrile

Some thienyl analogs of amidinomycin was written by Paul, Heinz;Migulla, Heinz. And the article was included in Archiv der Pharmazie (Weinheim, Germany) in 1978.Name: 4-Nitrothiophene-2-carbonitrile This article mentions the following:

RCONHCH2CH2CN (I; R = 4-nitro-2-thienyl, 5-nitro-2-thienyl, 2-thienyl) were prepared by saponification of RCN, chlorination of RCO2H, and reaction of RCOCl with H2NCH2CH2CN. I [R = 4-(4-tosylamino)-2-thienyl, 4-amino-2-thienyl, 5-amino-2-thienyl, 4-isopropylamino-2-thienyl, 5-isoproipylamino-2-thienyl] were similarly prepared I were subjected to ethanolysis to give RCONHCH2CH2C(:NH)OEt, which were treated with NH3 to give amidines RCONHCH2CH2C(:NH)NH2. None of the compounds prepared had any antiviral activity. In the experiment, the researchers used many compounds, for example, 4-Nitrothiophene-2-carbonitrile (cas: 42137-24-6Name: 4-Nitrothiophene-2-carbonitrile).

4-Nitrothiophene-2-carbonitrile (cas: 42137-24-6) belongs to nitriles. Nitrile compounds can be prepared by the incorporation of a cyanide source through C–C bond formation or by dehydration of primary carboxamides. Nitrile groups in organic compounds can undergo a variety of reactions depending on the reactants or conditions. A nitrile group can be hydrolyzed, reduced, or ejected from a molecule as a cyanide ion.Name: 4-Nitrothiophene-2-carbonitrile

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Czerney, P. et al. published their research in Journal fuer Praktische Chemie (Leipzig) in 1981 | CAS: 51473-74-6

7-(Diethylamino)-2-oxo-2H-chromene-3-carbonitrile (cas: 51473-74-6) belongs to nitriles. Nitrile function is a very important functional group because it can be manipulated to other functional groups such as carboxylic acid by hydrolysis or amine by reduction, respectively. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).Electric Literature of C14H14N2O2

Synthesis of 3-cyanocoumarins was written by Czerney, P.;Hartmann, H.. And the article was included in Journal fuer Praktische Chemie (Leipzig) in 1981.Electric Literature of C14H14N2O2 This article mentions the following:

The cyanocoumarins I (R = H, 6-Br, 8-MeO, 7-Me2N, 7-Et2N, 7-pyrrolidino, 5,6-benzo) were prepared by cyclization of the benzaldehydes II with H2NCOCH2CN to give the coumarincarboxamides III, which were treated with POCl3-DMF and then hydrolyzed. In the experiment, the researchers used many compounds, for example, 7-(Diethylamino)-2-oxo-2H-chromene-3-carbonitrile (cas: 51473-74-6Electric Literature of C14H14N2O2).

7-(Diethylamino)-2-oxo-2H-chromene-3-carbonitrile (cas: 51473-74-6) belongs to nitriles. Nitrile function is a very important functional group because it can be manipulated to other functional groups such as carboxylic acid by hydrolysis or amine by reduction, respectively. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).Electric Literature of C14H14N2O2

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Qi, Jifeng et al. published their research in Journal of Medicinal Chemistry in 2022 | CAS: 60025-09-4

4-Amino-6-chloropyrimidine-5-carbonitrile (cas: 60025-09-4) belongs to nitriles. Nitrile function is a very important functional group because it can be manipulated to other functional groups such as carboxylic acid by hydrolysis or amine by reduction, respectively. Nitriles are susceptible to hydrogenation over diverse metal catalysts. The reaction can afford either the primary amine (RCH2NH2) or the tertiary amine ((RCH2)3N), depending on conditions.Category: nitriles-buliding-blocks

Discovery of Novel Indazoles as Potent and Selective PI3Kδ Inhibitors with High Efficacy for Treatment of Hepatocellular Carcinoma was written by Qi, Jifeng;Wang, Weihua;Tang, Yongmei;Lou, Shengying;Wang, Jiaer;Yuan, Tao;He, Qiaojun;Yang, Bo;Zhu, Hong;Cui, Sunliang. And the article was included in Journal of Medicinal Chemistry in 2022.Category: nitriles-buliding-blocks This article mentions the following:

A total of 26 indazole derivatives I (R1 = H, F, Cl, CF3; R2 = H, F, Me; R3 = Me, Et, isopropyl; R4 = pyridin-3-yl, 3,5-difluorophenyl, 4-cyanophenyl, etc.; R5 = 9H-purin-6-yl, 2-amino-9H-purin-6-yl, 3-cyanopyridin-2-yl, etc.) were designed and prepared to identify a novel compound I (R1 = Cl; R2 = H; R3 = methyl; R4 = pyridin-3-yl; R5 = 2,6-diamino-5-cyanopyrimidin-4-yl) (II) with good isoform selectivity, PK profile, and potency. Compared to Idelalisib and Sorafenib, the pharmacodynamic (PD) studies showed that II exhibits superior efficacy in HCC cell lines and xenograft models, and the mechanistic study showed that II robustly suppresses the downstream AKT pathway to induce subsequent apoptotic cell death in HCC models. Therefore, this work provides a new structural design of PI3Kδ inhibitors for a novel and efficient therapeutic small mol. toward HCC. In the experiment, the researchers used many compounds, for example, 4-Amino-6-chloropyrimidine-5-carbonitrile (cas: 60025-09-4Category: nitriles-buliding-blocks).

4-Amino-6-chloropyrimidine-5-carbonitrile (cas: 60025-09-4) belongs to nitriles. Nitrile function is a very important functional group because it can be manipulated to other functional groups such as carboxylic acid by hydrolysis or amine by reduction, respectively. Nitriles are susceptible to hydrogenation over diverse metal catalysts. The reaction can afford either the primary amine (RCH2NH2) or the tertiary amine ((RCH2)3N), depending on conditions.Category: nitriles-buliding-blocks

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Wang, Jing et al. published their research in Journal of Catalysis in 2019 | CAS: 4714-63-0

4-(Ethylamino)benzonitrile (cas: 4714-63-0) belongs to nitriles. Nitrile compounds can be prepared by the incorporation of a cyanide source through C–C bond formation or by dehydration of primary carboxamides. Alkyl nitriles are sufficiently acidic to undergo deprotonation of the C-H bond adjacent to the CN group.Strong bases are required, such as lithium diisopropylamide and butyl lithium. The product is referred to as a nitrile anion. Computed Properties of C9H10N2

A strategy of two-step tandem catalysis towards direct N-alkylation of nitroarenes with ethanol via facile fabricated novel Co-based catalysts derived from coordination polymers was written by Wang, Jing;Qi, Tianqinji;Li, Zhibin;She, Wei;Li, Xuewei;Li, Jingfang;Yan, Pengfei;Li, Weizuo;Li, Guangming. And the article was included in Journal of Catalysis in 2019.Computed Properties of C9H10N2 This article mentions the following:

Three novel N-doped carbon supported Co/Co3O4 catalysts, namely, Co@CN-hmta, Co@CN-larg and Co-Co3O4@CN-bipy, with sheet-, worm-, honeycomb-like morphologies resp., have been fabricated by the pyrolysis of well-defined coordination polymers (CPs). Base upon the application of as-prepared catalysts, for the reaction of N-alkylation of nitroarenes 4-RC6H4NO2 (R = H, 3-Cl, 4-Me, etc.) with ethanol, a direct two-step tandem reaction is realized, in which Co@CN-hmta delivers 100% conversion/selectivity of N-ethylaniline/N,N-diethylaniline from the direct N-alkylation of nitroarenes with ethanol. The kinetic studies were conducted to confirm that the N-alkylation of aniline with ethanol is the rate-determining step in the two-step tandem reaction. The SEM/EDX, XRD, Raman, TEM, XPS, and CO2-TPD characterization results have revealed that sizes and dispersion of metallic Co, amount of structural defects and surface Lewis basicity towards three catalysts can be tuned by changing the structures of Co-based CPs designed by different organic linkers, which may also help to understand the preparation of industrial catalysts on a mol. level. The optimized Co@CN-hmta catalyst is easily recycled by using the external magnet for successive reuses without any loss in both activity and selectivity. This is the first reported carbon-nitrogen species supported Co/Co3O4 catalysts derived from the CPs, which could effectively catalyze the N-alkylation of nitroarenes with ethanol to produce the secondary amines and/or tertiary amines. This low-cost, recyclable and easy scale-up N-doped carbon supported catalyst may be of potential application in various heterogeneous catalytic reactions. In the experiment, the researchers used many compounds, for example, 4-(Ethylamino)benzonitrile (cas: 4714-63-0Computed Properties of C9H10N2).

4-(Ethylamino)benzonitrile (cas: 4714-63-0) belongs to nitriles. Nitrile compounds can be prepared by the incorporation of a cyanide source through C–C bond formation or by dehydration of primary carboxamides. Alkyl nitriles are sufficiently acidic to undergo deprotonation of the C-H bond adjacent to the CN group.Strong bases are required, such as lithium diisopropylamide and butyl lithium. The product is referred to as a nitrile anion. Computed Properties of C9H10N2

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Adak, Laksmikanta et al. published their research in New Journal of Chemistry in 2011 | CAS: 55490-87-4

2-(Anthracen-9-ylmethylene)malononitrile (cas: 55490-87-4) belongs to nitriles. Trimerization of aromatic nitriles requires harsh reaction conditions, high temperatures, long reaction times, and pressure. Industrially, the main methods for producing nitriles are ammoxidation and hydrocyanation. Both routes are green in the sense that they do not generate stoichiometric amounts of salts.Recommanded Product: 2-(Anthracen-9-ylmethylene)malononitrile

Amphiphilic allylation of activated alkenes by allyl acetates and allylstannanes catalyzed by palladium nanoparticles: an easy access to stereodefined substituted cyclohexene derivatives was written by Adak, Laksmikanta;Bhadra, Sukalyan;Chattopadhyay, Kalicharan;Ranu, Brindaban C.. And the article was included in New Journal of Chemistry in 2011.Recommanded Product: 2-(Anthracen-9-ylmethylene)malononitrile This article mentions the following:

An efficient vicinal double allylation of activated alkenes by allyl acetates and allylstannanes catalyzed by palladium nanoparticles, generated in situ from palladium(ii) chloride, has been demonstrated. Several activated alkenes produce functionalized 1,7-octadiene derivatives in one pot. The additions of substituted allyl acetates are highly regioselective. The Grubbs cyclization of octadiene derivatives gives an easy access to stereodefined substituted cyclohexene derivatives In the experiment, the researchers used many compounds, for example, 2-(Anthracen-9-ylmethylene)malononitrile (cas: 55490-87-4Recommanded Product: 2-(Anthracen-9-ylmethylene)malononitrile).

2-(Anthracen-9-ylmethylene)malononitrile (cas: 55490-87-4) belongs to nitriles. Trimerization of aromatic nitriles requires harsh reaction conditions, high temperatures, long reaction times, and pressure. Industrially, the main methods for producing nitriles are ammoxidation and hydrocyanation. Both routes are green in the sense that they do not generate stoichiometric amounts of salts.Recommanded Product: 2-(Anthracen-9-ylmethylene)malononitrile

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Woolford, Alison J.-A. et al. published their research in Journal of Medicinal Chemistry in 2016 | CAS: 104798-53-0

2-Fluoro-5-hydroxybenzenecarbonitrile (cas: 104798-53-0) belongs to nitriles. Nitrile carbon shifts are in the range of 115–125 ppm whereas in isonitriles the shifts are around 155–165 ppm. Some nitriles are manufactured by heating carboxylic acids with ammonia in the presence of catalysts. This process is used to make nitriles from natural fats and oils, the products being used as softening agents in synthetic rubbers, plastics, and textiles and for making amines.Related Products of 104798-53-0

Fragment-Based Approach to the Development of an Orally Bioavailable Lactam Inhibitor of Lipoprotein-Associated Phospholipase A2 (Lp-PLA2) was written by Woolford, Alison J.-A.;Day, Philip J.;Beneton, Veronique;Berdini, Valerio;Coyle, Joseph E.;Dudit, Yann;Grondin, Pascal;Huet, Pascal;Lee, Lydia Y. W.;Manas, Eric S.;McMenamin, Rachel L.;Murray, Christopher W.;Page, Lee W.;Patel, Vipulkumar K.;Potvain, Florent;Rich, Sharna J.;Sang, Yingxia;Somers, Don O.;Trottet, Lionel;Wan, Zehong;Zhang, Xiaomin. And the article was included in Journal of Medicinal Chemistry in 2016.Related Products of 104798-53-0 This article mentions the following:

Lp-PLA2 has been explored as a target for a number of inflammation associated diseases, including cardiovascular disease and dementia. This article describes the discovery of a new fragment derived chemotype that interacts with the active site of Lp-PLA2. The starting fragment hit was discovered through an x-ray fragment screen and showed no activity in the bioassay (IC50 > 1 mM). The fragment hit was optimized using a variety of structure-based drug design techniques, including virtual screening, fragment merging, and improvement of shape complementarity. A novel series of Lp-PLA2 inhibitors was generated with low lipophilicity and a promising pharmacokinetic profile. In the experiment, the researchers used many compounds, for example, 2-Fluoro-5-hydroxybenzenecarbonitrile (cas: 104798-53-0Related Products of 104798-53-0).

2-Fluoro-5-hydroxybenzenecarbonitrile (cas: 104798-53-0) belongs to nitriles. Nitrile carbon shifts are in the range of 115–125 ppm whereas in isonitriles the shifts are around 155–165 ppm. Some nitriles are manufactured by heating carboxylic acids with ammonia in the presence of catalysts. This process is used to make nitriles from natural fats and oils, the products being used as softening agents in synthetic rubbers, plastics, and textiles and for making amines.Related Products of 104798-53-0

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Yasue, Masaichi et al. published their research in Yakugaku Zasshi in 1957 | CAS: 60710-80-7

3-Amino-4-methylbenzonitrile (cas: 60710-80-7) belongs to nitriles. Nitriles are polar, as indicated by high dipole moments. As liquids, they have high relative permittivities, often in the 30s. Nitrile groups in organic compounds can undergo a variety of reactions depending on the reactants or conditions. A nitrile group can be hydrolyzed, reduced, or ejected from a molecule as a cyanide ion.HPLC of Formula: 60710-80-7

Reaction of substituted benzenes and chloral. VII. Reaction of ο-acetotoluidide and chloral was written by Yasue, Masaichi;Takai, Yoshiharu;Yoshizawa, Shigeru. And the article was included in Yakugaku Zasshi in 1957.HPLC of Formula: 60710-80-7 This article mentions the following:

O-Acetotoluidide (30 g.), 33 g. CCl3CH(OH)2, and 100 ml. concentrated H2SO4 heated 20 hrs. at 50-60°, the product poured over ice, let stand overnight, the precipitate filtered off, washed with H2O, refluxed with 700 ml. H2O, cooled, the precipitate filtered off, and extracted with C6H6 gave 12 g. C6H6-soluble portion (I) and a small amount of C6H6-insoluble portion (II); the above reaction 3 weeks at 10-15° yielded 6.7 g. I and 13.5 g. II (this yielded 0.5 g. substance, m. 158-65°); the reaction 10 days at 20° yielded 13 g. I and 3.5 g. II. I (12 g.) in 80 ml. AcOH treated portionwise with 15 g. Zn, heated 4 hrs. on an H2O bath, the solution filtered while hot, the filtrate neutralized with NH4OH, the solution concentrated in vacuo, and the residue extracted with C6H6 gave 2.1 g. 2,5-Me(Cl2CHCH2)C6H3NHAc (III), needles, m. 155.5-6° (EtOH). III (1.7 g.) in 30 ml. EtOH and 0.5 g. NaOH in 10 ml. EtOH refluxed 1 hr., the EtOH removed by heating with 1 g. NH4Cl and 2 ml. H2O, and the residue extracted with C6H6 gave 1.2 g. 2,5-Me(ClCH:CH)C6H3NHAc (IV), needles, m. 173-3.5° (EtOH). IV (0.9 g.) in 50 ml. Me2CO treated dropwise with 1.5 g. KMnO4 in 40 ml. H2O, let stand 2 hrs., the solution decolorized with Na2SO3 and concentrated, the residue acidified with 10% H2SO4, and the product recrystallized from EtOH gave 4,3-Me(AcNH)C6H3CO2H (V), needles, m. 277°. II (13 g.), 80 ml. AcOH, and 15 g. Zn was heated 4 hrs.; the product in a small amount of EtOH gave 0.1 g. insoluble [4,3-Me(AcNH)C6H3]2C2H4, needles, m. 298°, and the filtrate gave III, m. 156°. 4,3-Me(O2N)C6H3CN (10 g.), 25 g. Sn, and 100 ml. EtOH at 25-45° treated with 70 ml. concentrated H2SO4, heated until a clear solution was obtained, the EtOH removed, the residue made alk. with NaOH, and extracted with Et2O gave 8 g. 4,3-Me(H2N)C6H3CN (VI), m. 76-8°. VI (8 g.) and 15 ml. Ac2O refluxed 1 hr. and the product diluted with 100 ml. H2O gave 10 g. 4,3-Me(AcNH)C6H3CN (VII), m. 153-4° (EtOH). VII (8 g.), 150 ml. EtOH, 50 ml. 30% H2O2, and 4 ml. 10% NaOH let stand overnight, the EtOH removed, and the residue recrystallized from H2O gave 6 g. 4,3-Me(AcNH)C6H3CONH2 (VIII), columns, m. 185-7°. VIII (4 g.) and 50 ml. concentrated H2SO4 at 0° treated portionwise with 2.5 g. NaNO2, let stand 1 hr. at room temperature, the precipitate filtered off, taken up in 10% Na2CO3, the solution filtered, the filtrate acidified with 10% H2SO4, and the product recrystallized from 50% EtOH gave 2.5 g. V, needles, m. 278°. V (0.5 g.), 5 ml. AcOH, 5 ml. concentrated HCl, and 2.5 ml. H2O heated 30 min. on an H2O bath, the product made alk. with NH4OH, evaporated to dryness, and the residue recrystallized from H2O gave 4,3-Me(H2N)C6H3CO2H, columns, m. 164°. In the experiment, the researchers used many compounds, for example, 3-Amino-4-methylbenzonitrile (cas: 60710-80-7HPLC of Formula: 60710-80-7).

3-Amino-4-methylbenzonitrile (cas: 60710-80-7) belongs to nitriles. Nitriles are polar, as indicated by high dipole moments. As liquids, they have high relative permittivities, often in the 30s. Nitrile groups in organic compounds can undergo a variety of reactions depending on the reactants or conditions. A nitrile group can be hydrolyzed, reduced, or ejected from a molecule as a cyanide ion.HPLC of Formula: 60710-80-7

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Bogolubsky, Andrey V. et al. published their research in ACS Combinatorial Science in 2018 | CAS: 60710-80-7

3-Amino-4-methylbenzonitrile (cas: 60710-80-7) belongs to nitriles. Nitriles are polar, as indicated by high dipole moments. As liquids, they have high relative permittivities, often in the 30s. Alkyl nitriles are sufficiently acidic to undergo deprotonation of the C-H bond adjacent to the CN group.Strong bases are required, such as lithium diisopropylamide and butyl lithium. The product is referred to as a nitrile anion. Quality Control of 3-Amino-4-methylbenzonitrile

An Old Story in the Parallel Synthesis World: An Approach to Hydantoin Libraries was written by Bogolubsky, Andrey V.;Moroz, Yurii S.;Savych, Olena;Pipko, Sergey;Konovets, Angelika;Platonov, Maxim O.;Vasylchenko, Oleksandr V.;Hurmach, Vasyl V.;Grygorenko, Oleksandr O.. And the article was included in ACS Combinatorial Science in 2018.Quality Control of 3-Amino-4-methylbenzonitrile This article mentions the following:

An approach to the parallel synthesis of hydantoin libraries by reaction of in situ generated 2,2,2-trifluoroethylcarbamates and α-amino esters was developed. To demonstrate utility of the method, a library of 1158 hydantoins designed according to the lead-likeness criteria (MW 200-350, cLogP 1-3) was prepared The success rate of the method was analyzed as a function of physicochem. parameters of the products, and it was found that the method can be considered as a tool for lead-oriented synthesis. A hydantoin-bearing submicromolar primary hit acting as an Aurora kinase A inhibitor was discovered with a combination of rational design, parallel synthesis using the procedures developed, in silico and in vitro screenings. In the experiment, the researchers used many compounds, for example, 3-Amino-4-methylbenzonitrile (cas: 60710-80-7Quality Control of 3-Amino-4-methylbenzonitrile).

3-Amino-4-methylbenzonitrile (cas: 60710-80-7) belongs to nitriles. Nitriles are polar, as indicated by high dipole moments. As liquids, they have high relative permittivities, often in the 30s. Alkyl nitriles are sufficiently acidic to undergo deprotonation of the C-H bond adjacent to the CN group.Strong bases are required, such as lithium diisopropylamide and butyl lithium. The product is referred to as a nitrile anion. Quality Control of 3-Amino-4-methylbenzonitrile

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Zhang, Jinshui et al. published their research in Angewandte Chemie, International Edition in 2012 | CAS: 55406-13-8

3-Methylthiophene-2-carbonitrile (cas: 55406-13-8) belongs to nitriles. There has been no report on the microbial biosynthesis of nitriles and the physiological function of such enzymes, nor was it not even known whether aliphatic and aromatic nitriles are biological compounds or just petrochemicals. Some nitriles are manufactured by heating carboxylic acids with ammonia in the presence of catalysts. This process is used to make nitriles from natural fats and oils, the products being used as softening agents in synthetic rubbers, plastics, and textiles and for making amines.Product Details of 55406-13-8

Co-Monomer Control of Carbon Nitride Semiconductors to Optimize Hydrogen Evolution with Visible Light was written by Zhang, Jinshui;Zhang, Guigang;Chen, Xiufang;Lin, Sen;Moehlmann, Lennart;Dolega, Grzegorz;Lipner, Grzegorz;Antonietti, Markus;Blechert, Siegfried;Wang, Xinchen. And the article was included in Angewandte Chemie, International Edition in 2012.Product Details of 55406-13-8 This article mentions the following:

Herein, we advance a strategy by employing a variety of new monomer building blocks with the desired compositions and electronic structures for chem. incorporation into the conjugated polymeric network of g-C3N4. Most precursors of carbon nitride polymers contain cyano groups, amino groups, or both, with the simplest case being cyanamide, which can undergo multiple thermal condensations to form stable aromatic carbon nitrides based on tri-s-triazine subunits. Therefore, we synthesized organic mols. bearing amino and/or cyano functionalities to integrate them directly into the carbon nitride polymers. This design may allow ample choice of organic anchoring groups, being a potentially valuable way to alter the phys. and chem. properties of the resulting heterogeneous organo-catalysts. In the experiment, the researchers used many compounds, for example, 3-Methylthiophene-2-carbonitrile (cas: 55406-13-8Product Details of 55406-13-8).

3-Methylthiophene-2-carbonitrile (cas: 55406-13-8) belongs to nitriles. There has been no report on the microbial biosynthesis of nitriles and the physiological function of such enzymes, nor was it not even known whether aliphatic and aromatic nitriles are biological compounds or just petrochemicals. Some nitriles are manufactured by heating carboxylic acids with ammonia in the presence of catalysts. This process is used to make nitriles from natural fats and oils, the products being used as softening agents in synthetic rubbers, plastics, and textiles and for making amines.Product Details of 55406-13-8

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Davis, Roman et al. published their research in Journal of Organic Chemistry in 1981 | CAS: 4435-14-7

2-Cyclohexylacetonitrile (cas: 4435-14-7) belongs to nitriles. The electronic structure of nitriles is very similar to that of an alkyne with the main difference being the presence of a set of lone pair electrons on the nitrogen. Industrially, the main methods for producing nitriles are ammoxidation and hydrocyanation. Both routes are green in the sense that they do not generate stoichiometric amounts of salts.Reference of 4435-14-7

Direct one-step conversion of alcohols into nitriles was written by Davis, Roman;Untch, Karl G.. And the article was included in Journal of Organic Chemistry in 1981.Reference of 4435-14-7 This article mentions the following:

Primary, secondary, and tertiary alcs. (10 compounds) are converted into the corresponding nitriles by treatment with two equivalent of NaCN-Me3SiCl and a catalytic amount of NaI in DMF-CH3CN. The reactions are complete in 2-8 h. Except for cyclohexanol, the yields range from 75-98%. Evidence is presented which demonstrates that SN2 and SN1 processes are obtained and a common bis-silyloxonium intermediate is suggested. In the experiment, the researchers used many compounds, for example, 2-Cyclohexylacetonitrile (cas: 4435-14-7Reference of 4435-14-7).

2-Cyclohexylacetonitrile (cas: 4435-14-7) belongs to nitriles. The electronic structure of nitriles is very similar to that of an alkyne with the main difference being the presence of a set of lone pair electrons on the nitrogen. Industrially, the main methods for producing nitriles are ammoxidation and hydrocyanation. Both routes are green in the sense that they do not generate stoichiometric amounts of salts.Reference of 4435-14-7

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts