Camarasa, Marta et al. published their research in Molecular Diversity in 2013 | CAS: 67197-53-9

2-(2,6-Dibromophenyl)acetonitrile (cas: 67197-53-9) belongs to nitriles. The R-C-N bond angle in and nitrile is 180鎺?which give a nitrile functional group a linear shape. Both the carbon and the nitrogen are sp hydridized which leaves them both with two p orbitals which overlap to form the two 锜? bond in the triple bond. 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.Quality Control of 2-(2,6-Dibromophenyl)acetonitrile

A new and practical method for the synthesis of 6-aryl-5,6-dihydropyrido[2,3-d]pyrimidine-4,7(3H,8H)-diones was written by Camarasa, Marta;Barnils, Christian;Puig de la Bellacasa, Raimon;Teixido, Jordi;Borrell, Jose I.. And the article was included in Molecular Diversity in 2013.Quality Control of 2-(2,6-Dibromophenyl)acetonitrile This article mentions the following:

A one step general synthetic method for the synthesis of 6-aryl-5,6-dihydropyrido[2,3-d]pyrimidine-4,7(3H,8H)-dione derivatives was described. This methodol. is based on treating a 2-aryl-substituted acrylate with a 6-amino-4(3H)-pyrimidinone derivative in the presence of a base under microwave irradiation conditions. The resulting pyrido[2,3-d]pyrimidine derivatives present an aryl substituent at position C6, precisely the one directly related to the biol. activity of such heterocyclic compounds These protocols were extended to other 2-alkyl-substituted and 3-alkyl (or aryl)-substituted acrylate derivatives but with lower yields. The synthesis of the target compounds was achieved by a reaction of 2,6-diamino-4(3H)-pyrimidinone with 浼?(methylene)benzeneacetic acid Me ester derivatives (acrylate esters), 浼?methylene-1-naphthaleneacetic acid Me ester, 2-methyl-2-propenoic acid Me ester. 6-Amino-2-(methylthio)-4(3H)-pyrimidinone was also a suitable starting material. The title compounds thus formed included 2-amino-5,8-dihydro-6-(phenyl)pyrido[2,3-d]pyrimidine-4,7(3H,6H)-dione (I) and related substances. In the experiment, the researchers used many compounds, for example, 2-(2,6-Dibromophenyl)acetonitrile (cas: 67197-53-9Quality Control of 2-(2,6-Dibromophenyl)acetonitrile).

2-(2,6-Dibromophenyl)acetonitrile (cas: 67197-53-9) belongs to nitriles. The R-C-N bond angle in and nitrile is 180鎺?which give a nitrile functional group a linear shape. Both the carbon and the nitrogen are sp hydridized which leaves them both with two p orbitals which overlap to form the two 锜? bond in the triple bond. 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.Quality Control of 2-(2,6-Dibromophenyl)acetonitrile

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Perry, Matthew W. D. et al. published their research in Journal of Medicinal Chemistry in 2017 | CAS: 60025-09-4

4-Amino-6-chloropyrimidine-5-carbonitrile (cas: 60025-09-4) belongs to nitriles. Nitrile carbon shifts are in the range of 115閳?25 ppm whereas in isonitriles the shifts are around 155閳?65 ppm. In conventional organic reductions, nitrile is reduced by treatment with lithium aluminium hydride to the amine. Reduction to the imine followed by hydrolysis to the aldehyde takes place in the Stephen aldehyde synthesis, which uses stannous chloride in acid.Electric Literature of C5H3ClN4

Design and Synthesis of Soluble and Cell-Permeable PI3K鏈?Inhibitors for Long-Acting Inhaled Administration was written by Perry, Matthew W. D.;Bjoerhall, Karin;Bonn, Britta;Carlsson, Johan;Chen, Yunhua;Eriksson, Anders;Fredlund, Linda;Hao, Hai’e;Holden, Neil S.;Karabelas, Kostas;Lindmark, Helena;Liu, Feifei;Pemberton, Nils;Petersen, Jens;Rodrigo Blomqvist, Sandra;Smith, Reed W.;Svensson, Tor;Terstiege, Ina;Tyrchan, Christian;Yang, Wenzhen;Zhao, Shuchun;Oester, Linda. And the article was included in Journal of Medicinal Chemistry in 2017.Electric Literature of C5H3ClN4 This article mentions the following:

PI3K鏈?is a lipid kinase that is believed to be important in the migration and activation of cells of the immune system. Inhibition is hypothesized to provide a powerful yet selective immunomodulatory effect that may be beneficial for the treatment of conditions such as asthma or rheumatoid arthritis. In this work, identification of inhibitors based on a thiazolopyridone core structure and their subsequent optimization for inhalation is described. The initially identified compound I had good potency and isoform selectivity but was not suitable for inhalation. Addition of basic substituents to a region of the mol. pointing to solvent was tolerated (enzyme inhibition pIC50 > 9), and by careful manipulation of the pKa and lipophilicity, the authors were able to discover compounds II (R = Me or i-Bu) with good lung retention and cell potency that could be taken forward to in vivo studies where significant target engagement could be demonstrated. In the experiment, the researchers used many compounds, for example, 4-Amino-6-chloropyrimidine-5-carbonitrile (cas: 60025-09-4Electric Literature of C5H3ClN4).

4-Amino-6-chloropyrimidine-5-carbonitrile (cas: 60025-09-4) belongs to nitriles. Nitrile carbon shifts are in the range of 115閳?25 ppm whereas in isonitriles the shifts are around 155閳?65 ppm. In conventional organic reductions, nitrile is reduced by treatment with lithium aluminium hydride to the amine. Reduction to the imine followed by hydrolysis to the aldehyde takes place in the Stephen aldehyde synthesis, which uses stannous chloride in acid.Electric Literature of C5H3ClN4

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Zheng, Haoteng et al. published their research in RSC Advances in 2022 | CAS: 55406-13-8

3-Methylthiophene-2-carbonitrile (cas: 55406-13-8) belongs to nitriles. The R-C-N bond angle in and nitrile is 180鎺?which give a nitrile functional group a linear shape. Both the carbon and the nitrogen are sp hydridized which leaves them both with two p orbitals which overlap to form the two 锜? bond in the triple bond. 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.Synthetic Route of C6H5NS

Programing a cyanide-free transformation of aldehydes to nitriles and one-pot synthesis of amides through tandem chemo-enzymatic cascades was written by Zheng, Haoteng;Xiao, Qinjie;Mao, Feiying;Wang, Anming;Li, Mu;Wang, Qiuyan;Zhang, Pengfei;Pei, Xiaolin. And the article was included in RSC Advances in 2022.Synthetic Route of C6H5NS This article mentions the following:

In this work, a greener chemo-enzymic cascade to synthesize alky and aryl nitriles RCN (R = Ph, Bn, pentyl, furan-2-yl, etc.) from readily accessible aldehydes RCHO, that were further transformed into corresponding amides RC(O)NH2 via an artificial enzyme cascade was reported. A biphasic reaction system was designed to bridge chem. synthesis and enzymic catalysis through simple phase separation The biphasic system mainly perfectly avoided the inactivation of hydroxylamine on aldoxime dehydratase from Pseudomonas putida (OxdF1) and nitrile hydratase from Aurantimonas manganoxydans ATCC BAA-1229 (NHase1229). For the synthesis of various nitriles, moderate isolation yields of approx. 60% were obtained by the chemo-enzymic cascade. Interestingly, two seemingly conflicting reactions of dehydration and hydration were sequentially proceeded to synthesize amides by the synergistic catalysis of OxdF1 and NHase1229 in E. coli cells. An isolation yield of approx. 62% was achieved for benzamide at the one-liter scale. In addition, the shuttle transport of substrates and products between two phases is convenient for the product separation and n-hexane recycling. Thus, the chemo-enzymic cascade shows a potential application in the cyanide-free and large-scale synthesis of nitriles and amides. In the experiment, the researchers used many compounds, for example, 3-Methylthiophene-2-carbonitrile (cas: 55406-13-8Synthetic Route of C6H5NS).

3-Methylthiophene-2-carbonitrile (cas: 55406-13-8) belongs to nitriles. The R-C-N bond angle in and nitrile is 180鎺?which give a nitrile functional group a linear shape. Both the carbon and the nitrogen are sp hydridized which leaves them both with two p orbitals which overlap to form the two 锜? bond in the triple bond. 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.Synthetic Route of C6H5NS

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Mao, Fei et al. published their research in RSC Advances in 2016 | CAS: 10282-32-3

4-(Benzylamino)benzonitrile (cas: 10282-32-3) belongs to nitriles. Nitrile compounds can be prepared by the incorporation of a cyanide source through C閳ユ弲 bond formation or by dehydration of primary carboxamides. In conventional organic reductions, nitrile is reduced by treatment with lithium aluminium hydride to the amine. Reduction to the imine followed by hydrolysis to the aldehyde takes place in the Stephen aldehyde synthesis, which uses stannous chloride in acid.Reference of 10282-32-3

Heterogeneous cobalt catalysts for reductive amination with H2: general synthesis of secondary and tertiary amines was written by Mao, Fei;Sui, Dejun;Qi, Zhengliang;Fan, Haipeng;Chen, Rizhi;Huang, Jun. And the article was included in RSC Advances in 2016.Reference of 10282-32-3 This article mentions the following:

Heterogeneous Co@NC catalysts were prepared, characterized and applied for the reductive amination of aldehydes and ketones with H2 gas. The Co catalyst Co@NC (800-2 h) was found to be active and selective for the reductive amination of aldehydes and ketones using H2 gas. Thus, general synthesis of secondary and tertiary amines was developed by the Co-catalyzed reductive amination with H2 gas, and various secondary and tertiary amines was obtained in high yields. Moreover, a practical synthesis of N-substituted isoindolinones was also presented by a one step process with the Co@NC (800-2 h) catalyst. The Co@NC (800-2 h) catalyst was reusable at least five times without evident loss of activity. In the experiment, the researchers used many compounds, for example, 4-(Benzylamino)benzonitrile (cas: 10282-32-3Reference of 10282-32-3).

4-(Benzylamino)benzonitrile (cas: 10282-32-3) belongs to nitriles. Nitrile compounds can be prepared by the incorporation of a cyanide source through C閳ユ弲 bond formation or by dehydration of primary carboxamides. In conventional organic reductions, nitrile is reduced by treatment with lithium aluminium hydride to the amine. Reduction to the imine followed by hydrolysis to the aldehyde takes place in the Stephen aldehyde synthesis, which uses stannous chloride in acid.Reference of 10282-32-3

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Han, Jing et al. published their research in Advanced Synthesis & Catalysis in 2013 | CAS: 1483-54-1

2-Amino-4-(trifluoromethyl)benzonitrile (cas: 1483-54-1) 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. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).Product Details of 1483-54-1

Copper(I)-Catalyzed Coupling Cyclization of Methyl Perfluoroalk-2-ynoates with 2-Aminobenzonitriles: Synthesis of 2-Perfluoroalkylated Quinolines was written by Han, Jing;Cao, Long;Bian, Linglin;Chen, Jie;Deng, Hongmei;Shao, Min;Jin, Zhijun;Zhang, Hui;Cao, Weiguo. And the article was included in Advanced Synthesis & Catalysis in 2013.Product Details of 1483-54-1 This article mentions the following:

An efficient route to 2-perfluoroalkylated quinoline derivatives through the copper(I)-mediated coupling-cyclization of 2-aminobenzonitriles with Me perfluoroalk-2-ynoates is described. Moderate to excellent yields have been achieved under mild conditions. E.g., in presence of CuBr and piperidine in DMSO, coupling-cyclization of 2-H2NC6H4CN and CF3C椤氬挵CO2Me gave 94% 2-perfluoroalkylated quinoline derivative (I). The reaction mechanism is also discussed. In the experiment, the researchers used many compounds, for example, 2-Amino-4-(trifluoromethyl)benzonitrile (cas: 1483-54-1Product Details of 1483-54-1).

2-Amino-4-(trifluoromethyl)benzonitrile (cas: 1483-54-1) 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. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).Product Details of 1483-54-1

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Legnani, Luca et al. published their research in ACS Catalysis in 2016 | CAS: 60979-25-1

3-Amino-4-methoxybenzonitrile (cas: 60979-25-1) belongs to nitriles. The R-C-N bond angle in and nitrile is 180鎺?which give a nitrile functional group a linear shape. Both the carbon and the nitrogen are sp hydridized which leaves them both with two p orbitals which overlap to form the two 锜? bond in the triple bond. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).Electric Literature of C8H8N2O

Direct and Practical Synthesis of Primary Anilines through Iron-Catalyzed C-H Bond Amination was written by Legnani, Luca;Prina Cerai, Gabriele;Morandi, Bill. And the article was included in ACS Catalysis in 2016.Electric Literature of C8H8N2O This article mentions the following:

The direct C-H amination of arenes is an important strategy to streamline the discovery and preparation of functional mols. Herein, we report an operationally simple arene C-H amination reaction that, in contrast to most literature precedence, affords directly the synthetically versatile primary aniline products without relying on protecting group manipulations. Inexpensive Fe(II) sulfate serves as a convenient catalyst for the transformation. The reaction tolerates a wide scope of arenes, including structurally complex drugs. Importantly, the arene substrates are used as limiting reagents in the transformation. This operationally simple transformation should considerably accelerate the discovery of medicines and functional mols. In the experiment, the researchers used many compounds, for example, 3-Amino-4-methoxybenzonitrile (cas: 60979-25-1Electric Literature of C8H8N2O).

3-Amino-4-methoxybenzonitrile (cas: 60979-25-1) belongs to nitriles. The R-C-N bond angle in and nitrile is 180鎺?which give a nitrile functional group a linear shape. Both the carbon and the nitrogen are sp hydridized which leaves them both with two p orbitals which overlap to form the two 锜? bond in the triple bond. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).Electric Literature of C8H8N2O

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Huang, Guo-Quan et al. published their research in Inorganic Chemistry in 2022 | CAS: 55490-87-4

2-(Anthracen-9-ylmethylene)malononitrile (cas: 55490-87-4) 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. 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. Application of 55490-87-4

Mixed-Linker Isoreticular Zn(II) Metal-Organic Frameworks as Bronsted Acid-Base Bifunctional Catalysts for Knoevenagel Condensation Reactions was written by Huang, Guo-Quan;Chen, Jun;Huang, Yong-Liang;Wu, Kun;Luo, Dong;Jin, Ji-Kang;Zheng, Ji;Xu, Shi-Hai;Lu, Weigang. And the article was included in Inorganic Chemistry in 2022.Application of 55490-87-4 This article mentions the following:

Multicomponent metal-organic frameworks (MOFs) have received an increasing amount of attention due to their potential to produce new topologies, pore metrics, and functionalities compared to MOFs with a single metal cluster and one organic linker. Herein, five isoreticular Zn MOFs were obtained by mixing two types of linear ditopic linkers in a one-pot solvothermal synthesis. Interestingly, in the resulting Zn MOFs a six-connected cyclic trinuclear Zn(II) cluster and an eight-connected linear trinuclear Zn(II) cluster coexist, leading to an uncommon (6,8)-connected network. Catalytic activities toward the solvent-free Knoevenagel reactions were observed for all of these MOFs. Further exptl. and computational studies suggest that they are Bronsted acid-base bifunctional catalysts. Through chem. modifications of dicarboxylate ligands, including their aromatic backbones and substituents, we have successfully implemented reticular chem. for the modulations of pore sizes, surface areas, and catalytic performances in a series of four-component isoreticular MOFs. In the experiment, the researchers used many compounds, for example, 2-(Anthracen-9-ylmethylene)malononitrile (cas: 55490-87-4Application of 55490-87-4).

2-(Anthracen-9-ylmethylene)malononitrile (cas: 55490-87-4) 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. 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. Application of 55490-87-4

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Khanfar, Mohammad A. et al. published their research in European Journal of Medicinal Chemistry in 2014 | CAS: 1753-48-6

2-Aminopyrimidine-5-carbonitrile (cas: 1753-48-6) belongs to nitriles. Nitrile carbon shifts are in the range of 115閳?25 ppm whereas in isonitriles the shifts are around 155閳?65 ppm. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).HPLC of Formula: 1753-48-6

Development and characterization of 3-(arylsulfamoyl)benzamides as potent and selective SIRT2 inhibitors was written by Khanfar, Mohammad A.;Quinti, Luisa;Wang, Hua;Choi, Soo Hyuk;Kazantsev, Aleksey G.;Silverman, Richard B.. And the article was included in European Journal of Medicinal Chemistry in 2014.HPLC of Formula: 1753-48-6 This article mentions the following:

Inhibitors of sirtuin-2 deacetylase (SIRT2) have been shown to be protective in various models of Huntington’s disease (HD) by decreasing polyglutamine aggregation, a hallmark of HD pathol. The present study was directed at optimizing the potency of SIRT2 inhibitors containing the neuroprotective sulfobenzoic acid scaffold and improving their pharmacol. To achieve that goal, 176 analogs were designed, synthesized, and tested in deacetylation assays against the activities of major human sirtuins SIRT1-3. This screen yielded 15 compounds with enhanced potency for SIRT2 inhibition and 11 compounds having SIRT2 inhibition equal to reference compound AK-1. The newly synthesized compounds also demonstrated higher SIRT2 selectivity over SIRT1 and SIRT3. These candidates were subjected to a dose-response bioactivity assay, measuring an increase in 浼?tubulin K40 acetylation in two neuronal cell lines, which yielded five compounds bioactive in both cell lines and eight compounds bioactive in at least one of the cell lines tested. These bioactive compounds were subsequently tested in a tertiary polyglutamine aggregation assay, which identified five inhibitors. ADME properties of the bioactive SIRT2 inhibitors (e.g., I) were assessed, which revealed a significant improvement of the pharmacol. properties of the new entities, reaching closer to the goal of a clin.-viable candidate. In the experiment, the researchers used many compounds, for example, 2-Aminopyrimidine-5-carbonitrile (cas: 1753-48-6HPLC of Formula: 1753-48-6).

2-Aminopyrimidine-5-carbonitrile (cas: 1753-48-6) belongs to nitriles. Nitrile carbon shifts are in the range of 115閳?25 ppm whereas in isonitriles the shifts are around 155閳?65 ppm. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).HPLC of Formula: 1753-48-6

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Wada, Emiko et al. published their research in Catalysis Science & Technology in 2017 | CAS: 4435-14-7

2-Cyclohexylacetonitrile (cas: 4435-14-7) belongs to nitriles. The R-C-N bond angle in and nitrile is 180鎺?which give a nitrile functional group a linear shape. Both the carbon and the nitrogen are sp hydridized which leaves them both with two p orbitals which overlap to form the two 锜? bond in the triple bond. 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. Recommanded Product: 4435-14-7

Direct cyanomethylation of aliphatic and aromatic hydrocarbons with acetonitrile over a metal loaded titanium oxide photocatalyst was written by Wada, Emiko;Takeuchi, Tomoaki;Fujimura, Yuki;Tyagi, Akanksha;Kato, Tatsuhisa;Yoshida, Hisao. And the article was included in Catalysis Science & Technology in 2017.Recommanded Product: 4435-14-7 This article mentions the following:

A platinum-loaded TiO2 (Pt/TiO2) photocatalyst promoted cyanomethylation of aliphatic hydrocarbons, namely cyclohexane and cyclohexene, with acetonitrile, where the photogenerated hole oxidatively dissociates the C-H bond of both the acetonitrile and the aliphatic hydrocarbons to form each corresponding radical species before their radical cross-coupling. The Pt/TiO2 photocatalyst was more active than the Pd/TiO2 photocatalyst in these reactions. In contrast, the cyanomethylation of benzene was promoted by the Pd/TiO2 photocatalyst or a phys. mixture of the Pt/TiO2 photocatalyst and a Pd catalyst supported by Al2O3, while it was hardly promoted by the Pt/TiO2 photocatalyst alone. The temperature dependence of the reaction rate proved that the Pd nanoparticles on the TiO2 thermally function as a metal catalyst. However, in the cyanomethylation of aliphatic hydrocarbons, the catalytic effect of the metal particles was not observed, meaning that the radical coupling takes place without the metal catalysis. Thus, it is concluded that in the case of the benzene cyanomethylation the Pd nanoparticles play dual roles, as a catalyst to catalyze the substitution reaction of benzene with the cyanomethyl radical, and as an electron receiver to reduce the recombination of the photoexcited electrons and holes in the TiO2 photocatalyst, although they could not contribute as a catalyst to the cyanomethylation of aliphatic hydrocarbons. In the experiment, the researchers used many compounds, for example, 2-Cyclohexylacetonitrile (cas: 4435-14-7Recommanded Product: 4435-14-7).

2-Cyclohexylacetonitrile (cas: 4435-14-7) belongs to nitriles. The R-C-N bond angle in and nitrile is 180鎺?which give a nitrile functional group a linear shape. Both the carbon and the nitrogen are sp hydridized which leaves them both with two p orbitals which overlap to form the two 锜? bond in the triple bond. 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. Recommanded Product: 4435-14-7

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Fisher, T. H. et al. published their research in Journal of Organic Chemistry in 1978 | CAS: 64113-86-6

5-Methyl-2-nitrobenzonitrile (cas: 64113-86-6) 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. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).SDS of cas: 64113-86-6

Substituent effects in free-radical reactions. A study of 4-substituted 3-cyanobenzyl free radicals was written by Fisher, T. H.;Meierhoefer, A. W.. And the article was included in Journal of Organic Chemistry in 1978.SDS of cas: 64113-86-6 This article mentions the following:

An extended Hammett treatment of the kinetics of N-bromosuccinimide bromination of I (R = H, halo, Me, Ph, MeO, NO2, PhN:N, CN, MeCO) led to a free radical substituent constant (σ•). The substituent order of free-radical stabilization was F < MeO < Me < H < Cl < Ph < I < Br < NO2 < PhN:N < CN < MeCO. F and MeO destabilized the radical. In the experiment, the researchers used many compounds, for example, 5-Methyl-2-nitrobenzonitrile (cas: 64113-86-6SDS of cas: 64113-86-6).

5-Methyl-2-nitrobenzonitrile (cas: 64113-86-6) 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. In addition, Nitriles can react with alkynes, which leads to an increase in carbon chain length (carbocyanation).SDS of cas: 64113-86-6

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts