Ramanathan, Mani et al. published their research in Journal of Organic Chemistry in 2018 | CAS: 53312-77-9

2-Amino-3-chlorobenzonitrile (cas: 53312-77-9) 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.Safety of 2-Amino-3-chlorobenzonitrile

Preparation of Quinazolinoquinazolinones via a Cascade Approach was written by Ramanathan, Mani;Liu, Shiuh-Tzung. And the article was included in Journal of Organic Chemistry in 2018.Safety of 2-Amino-3-chlorobenzonitrile This article mentions the following:

A one-pot synthesis of quinazolino[3,4-a]quinazolin-13-ones was realized from the direct reaction of o-(methoxycarbonyl)benzenediazonium salts, nitriles, and 2-cyanoanilines in moderate to good yields. This method utilizes the in situ generation of reactive N-arylnitrilium ion, which undergoes further amination/tandem cyclization/amidation to deliver the desired polycyclic scaffolds with consecutive formation of four N-C bonds. Flexibility in substitution patterns, mild reaction conditions, and operational simplicity are the salient features of this methodol. In the experiment, the researchers used many compounds, for example, 2-Amino-3-chlorobenzonitrile (cas: 53312-77-9Safety of 2-Amino-3-chlorobenzonitrile).

2-Amino-3-chlorobenzonitrile (cas: 53312-77-9) 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.Safety of 2-Amino-3-chlorobenzonitrile

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

de Jonge, A. P. et al. published their research in Recueil des Travaux Chimiques des Pays-Bas in 1965 | CAS: 4714-63-0

4-(Ethylamino)benzonitrile (cas: 4714-63-0) 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. 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: 4714-63-0

Acid anilides. XII. Preparation of 4- and 5-hydroxyalkananilides from γ- and δ-lactones was written by de Jonge, A. P.;van der Ven, B.. And the article was included in Recueil des Travaux Chimiques des Pays-Bas in 1965.HPLC of Formula: 4714-63-0 This article mentions the following:

The synthesis of a series of RCH(OH)(CH2)nCONHPh (I) (n = 2 or 3) from less than 10 mg. of the corresponding lactones is described. EtBr (1.5 cc.) in 15 cc. dry Et2O added dropwise to 480 mg. Mg and 5 cc. dry Et2O at such a rate as to maintain refluxing and diluted with Et2O to 25 cc., a 1-cc. portion added dropwise to 1 cc. solution of 77 mg. PhNH2/cc. C6H6, and the mixture treated with not more than 10 mg. lactone in dry Et2O, refluxed 1.5 hrs. under an air condenser until the Et2O had evaporated, and treated with 10 cc. Et2O and 2 cc. 3N HCl gave the corresponding I. In this manner were prepared the following I (n = 2) (R and m.p. given): Bu, 114.9-15.8° (Et2O-petr. ether); iso-Bu, 137.6-8.9° (Et2O-petr. ether); Am (II), 99.5-100° (Et2O-petr. ether); C6H13 (III), 105.2-5.9° (50% EtOH); C7H15, 106-7° (Et2O-petr. ether); C8H17, 108.6-9.6° (50% EtOH). Similarly were prepared the following I (n = 3) (same data given): Pr (IV), 100.9-1.4° (Et2O-petr. ether); iso-Pr, 92.1-3.2° (Et2O-petr. ether); Bu, 102.2-3.3° (Et2O-petr. ether); Am (V), 101.3-1.9° (Et2O-petr. ether); iso-Am, 102.7-3.8° (Et2O-petr. ether); C6H13, 96.4-7.6° (Et2O); C7H15 (VI), 104.4-5.3° (Et2O-petr. ether); C8H17, 98.0-9.1° (Et2O); C9H19, 100.6-1.4° (Et2O-petr. ether); C10H24, 103.3-4.1° (Et2O). The rates of the hydrolysis of II, III, IV, and V in 3N HCl were measured spectrophotometrically at 241 mμ; about 8.5 mg. appropriate I in 50 cc. 30% aqueous MeOH was treated with 7 cc. 3.25N HCl; the rate constants k min.-1 and the half-life period in min. were for the following compounds: II, 0.0271, 25.6; III, 0.0292, 23.7; IV, 0.0189, 36.6; V, 0.0184, 37.7. The solubility of V in cyclohexane at 20° was 43.6 mg./l., that of VI 40.2 mg./l. In the experiment, the researchers used many compounds, for example, 4-(Ethylamino)benzonitrile (cas: 4714-63-0HPLC of Formula: 4714-63-0).

4-(Ethylamino)benzonitrile (cas: 4714-63-0) 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. 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: 4714-63-0

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Achar, Tapas Kumar et al. published their research in Chemistry – A European Journal in 2018 | CAS: 60979-25-1

3-Amino-4-methoxybenzonitrile (cas: 60979-25-1) 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. 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 60979-25-1

Regiocontrolled Remote C-H Olefination of Small Heterocycles was written by Achar, Tapas Kumar;Ramakrishna, Kankanala;Pal, Tapas;Porey, Sandip;Dolui, Pravas;Biswas, Jyoti Prasad;Maiti, Debabrata. And the article was included in Chemistry – A European Journal in 2018.Related Products of 60979-25-1 This article mentions the following:

Achieving site-selective C-H functionalization of arene is a fundamental challenge, as it is mainly controlled by the electronic nature of the mols. A chelation-assisted C-H functionalization strategy overcomes the selectivity issues by utilizing distance and geometry of covalently attached directing groups (DGs). This strategy requires stoichiometric DG installation/removal and a suitable functional group on which to tether the DG. Such strategies are ineffective for small heterocycles unless suitable functional groups are added. Moreover, heterocycles are not the judicious choice as substrates owing to the possibilities of catalyst deactivation. Inspired by recent developments, this work demonstrates the utilization of a chelating template backbone bearing covalently attached directing groups, which enables site-selective remote C-H functionalization of heterocycles. The observed selectivity is the outcome of non-covalent interactions between the heterocycles and bifunctional template backbone. In the experiment, the researchers used many compounds, for example, 3-Amino-4-methoxybenzonitrile (cas: 60979-25-1Related Products of 60979-25-1).

3-Amino-4-methoxybenzonitrile (cas: 60979-25-1) 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. 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 60979-25-1

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Reynaud, Pierre et al. published their research in Bulletin de la Societe Chimique de France in 1955 | CAS: 42137-24-6

4-Nitrothiophene-2-carbonitrile (cas: 42137-24-6) belongs to nitriles. Trimerization of aromatic nitriles requires harsh reaction conditions, high temperatures, long reaction times, and pressure. 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: 42137-24-6

Nitration of 2-cyanothiophene was written by Reynaud, Pierre;Delaby, Raymond. And the article was included in Bulletin de la Societe Chimique de France in 1955.Recommanded Product: 42137-24-6 This article mentions the following:

Fuming HNO3 (d. 1.49) added dropwise to 2-cyanothiophene in cold Ac2O (10-12°) gives 80% 4-nitro-2-cyanothiophene (I), m. 102° after recrystallization; 5-nitro-2-cyanothiophene (II), m. 45°, also forms in 20% yield. The reaction is kept easily under control by keeping the temperature below 20° with an ice-salt bath, and the isolation of the isomers presents no difficulty. I refluxed 2 h. with concentrated HCl forms 4-nitro-2-thiophenecarboxylic acid (III), m. 154°, after recrystallization I dissolves easily in HCl, and III crystallizes on cooling. This method also offers a simple method of preparation of 3-nitrothiophene, which is obtained in 77% yield from III by decarboxylation with Cu and quinoline in a tube in a metal bath; CO2 is evolved at 160°. In the experiment, the researchers used many compounds, for example, 4-Nitrothiophene-2-carbonitrile (cas: 42137-24-6Recommanded Product: 42137-24-6).

4-Nitrothiophene-2-carbonitrile (cas: 42137-24-6) belongs to nitriles. Trimerization of aromatic nitriles requires harsh reaction conditions, high temperatures, long reaction times, and pressure. 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: 42137-24-6

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Dong, Yanan et al. published their research in Nature Communications in 2020 | 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).Quality Control of 2-Amino-4-(trifluoromethyl)benzonitrile

Reductive cyanation of organic chlorides using CO2 and NH3 via Triphos-Ni(I) species was written by Dong, Yanan;Yang, Peiju;Zhao, Shizhen;Li, Yuehui. And the article was included in Nature Communications in 2020.Quality Control of 2-Amino-4-(trifluoromethyl)benzonitrile This article mentions the following:

The reductive cyanation of organic chlorides RCl (R = C6H5, naphthalen-1-yl, cyclohexyl, etc.) using CO2/NH3 as the electrophilic CN source has been described. The use of tridentate phosphine ligand Triphos allows for the nickel-catalyzed cyanation of a broad array of aryl and aliphatic chlorides to produce the desired nitrile products RCN in good yields, and with excellent functional group tolerance. Cheap and bench-stable urea was also shown as suitable CN source, suggesting promising application potential. Mechanistic studies imply that Triphos-Ni(I) species are responsible for the reductive C-C coupling approach involving isocyanate intermediates. This method expands the application potential of reductive cyanation in the synthesis of functionalized nitrile compounds under cyanide-free conditions, which is valuable for safe synthesis of (isotope-labeled) drugs. In the experiment, the researchers used many compounds, for example, 2-Amino-4-(trifluoromethyl)benzonitrile (cas: 1483-54-1Quality Control of 2-Amino-4-(trifluoromethyl)benzonitrile).

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).Quality Control of 2-Amino-4-(trifluoromethyl)benzonitrile

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Tang, Shanyu et al. published their research in Organic Letters in 2022 | CAS: 5351-07-5

2-(4-Methoxyphenyl)-2-methylpropanenitrile (cas: 5351-07-5) 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. 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.Safety of 2-(4-Methoxyphenyl)-2-methylpropanenitrile

Electrochemical Benzylic C-H Functionalization with Isocyanides was written by Tang, Shanyu;Guillot, Regis;Grimaud, Laurence;Vitale, Maxime R.;Vincent, Guillaume. And the article was included in Organic Letters in 2022.Safety of 2-(4-Methoxyphenyl)-2-methylpropanenitrile This article mentions the following:

Author report the challenging direct carbamoylation or cyanation of benzylic C(sp3)-H bonds with an isocyanide via an electrochem. process giving rise to structures which are encountered in several biol. relevant compounds and drugs. This transformation proceeds in mild conditions without the need of any external oxidant and avoids the necessity to start from a prefunctionalized benzylic substrate or the deployment of the cation pool method. Anodic oxidation of the benzylic position and subsequent addition of the isocyanide leads to the formation of a C-C bond and to a nitrilium cation which hydrolysis yields alpha-aryl acetamide derivatives, while elimination of a t-Bu cation delivers alpha-aryl acetonitrile derivatives In the experiment, the researchers used many compounds, for example, 2-(4-Methoxyphenyl)-2-methylpropanenitrile (cas: 5351-07-5Safety of 2-(4-Methoxyphenyl)-2-methylpropanenitrile).

2-(4-Methoxyphenyl)-2-methylpropanenitrile (cas: 5351-07-5) 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. 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.Safety of 2-(4-Methoxyphenyl)-2-methylpropanenitrile

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

El-Sharkawy, K. A. et al. published their research in International Research Journal of Pure and Applied Chemistry in 2012 | CAS: 70291-62-2

2-Amino-5,6-dihydro-4H-cyclopenta[b]thiophene-3-carbonitrile (cas: 70291-62-2) belongs to nitriles. Trimerization of aromatic nitriles requires harsh reaction conditions, high temperatures, long reaction times, and pressure. 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.COA of Formula: C8H8N2S

Uses of 2-amino-5,6-dihydro-4H-cyclopenta[b]thiophene-3-carbonitrile in the synthesis of heterocyclic compounds with anticonvulsant, behavioral and CNS antidepressant activities was written by El-Sharkawy, K. A.;El-Sayed, N. N. E.;Zaki, M. Y.. And the article was included in International Research Journal of Pure and Applied Chemistry in 2012.COA of Formula: C8H8N2S This article mentions the following:

A reaction of the cyclopenta[b]thiophene with Ph isothiocyanate gave a thiourea derivative The synthesis of the target compounds was achieved using 2-amino-5,6-dihydro-4H-cyclopenta[b]thiophene-3-carbonitrile as a starting material. The latter was treated with the active methylene compounds to provide pyrimidine derivatives N-acylation reaction was achieved using acetic anhydride as a reactant. N-(3-Cyano-5,6-dihydro-4H-cyclopenta[b]thien-2-yl)acetamide was used as a reactant for the synthesis of several derivatives thereof. Finally treatment of N-(3-cyano-5,6-dihydro-4H-cyclopenta[b]thien-2-yl)acetamide with different activated nitrile derivatives, hydrazine derivatives gave thienopyridine derivatives and thienopyrimidine derivatives The newly synthesized compounds were tested for anticonvulsant, behavioral and CNS antidepressant activities. The title compounds thus formed included a thienopyrimidine hydrazine imine (I). In the experiment, the researchers used many compounds, for example, 2-Amino-5,6-dihydro-4H-cyclopenta[b]thiophene-3-carbonitrile (cas: 70291-62-2COA of Formula: C8H8N2S).

2-Amino-5,6-dihydro-4H-cyclopenta[b]thiophene-3-carbonitrile (cas: 70291-62-2) belongs to nitriles. Trimerization of aromatic nitriles requires harsh reaction conditions, high temperatures, long reaction times, and pressure. 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.COA of Formula: C8H8N2S

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Rojas, Giovanni et al. published their research in Journal of the American Chemical Society in 2009 | CAS: 4435-14-7

2-Cyclohexylacetonitrile (cas: 4435-14-7) belongs to nitriles. Nitrile carbon shifts are in the range of 115–125 ppm whereas in isonitriles the shifts are around 155–165 ppm. 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.Safety of 2-Cyclohexylacetonitrile

Precision Polyethylene: Changes in Morphology as a Function of Alkyl Branch Size was written by Rojas, Giovanni;Inci, Bora;Wei, Yuying;Wagener, Kenneth B.. And the article was included in Journal of the American Chemical Society in 2009.Safety of 2-Cyclohexylacetonitrile This article mentions the following:

Metathesis polycondensation chem. has been employed to control the crystalline morphol. of a series of 11 precision-branched polyethylene structures, the branch being placed on each 21st carbon and ranging in size from a Me group to an adamantyl group. The crystalline unit cell is shifted from orthorhombic to triclinic, depending upon the nature of the precision branch. Further, the branch can be positioned either in the crystalline phase or in the amorphous phase of polyethylene, a morphol. change dictated by the size of the precision branch. This level of morphol. control is accomplished using step polymerization chem. to produce polyethylene rather than conventional chain polymerization techniques. Doing so requires the synthesis of a series of unique sym. diene monomers incorporating the branch in question, followed by ADMET polymerization and hydrogenation to yield the precision-branched polyethylene under study. Exhaustive structure characterization of all reaction intermediates as well as the precision polymers themselves is presented. A clear change in morphol. was observed for such polymers, where small branches (Me and ethyl) are included in the unit cell, while branches equal to or greater in mass than Pr are excluded from the crystal. When the branch is excluded from the unit cell, all such polyethylene polymers possess essentially the same melting temperature, regardless of the size of the branch, even for the adamantyl branch. In the experiment, the researchers used many compounds, for example, 2-Cyclohexylacetonitrile (cas: 4435-14-7Safety of 2-Cyclohexylacetonitrile).

2-Cyclohexylacetonitrile (cas: 4435-14-7) belongs to nitriles. Nitrile carbon shifts are in the range of 115–125 ppm whereas in isonitriles the shifts are around 155–165 ppm. 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.Safety of 2-Cyclohexylacetonitrile

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Patil, Nilesh M. et al. published their research in RSC Advances in 2015 | CAS: 60710-80-7

3-Amino-4-methylbenzonitrile (cas: 60710-80-7) 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. 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.Application In Synthesis of 3-Amino-4-methylbenzonitrile

Transfer hydrogenation of nitroarenes into anilines by palladium nanoparticles via dehydrogenation of dimethylamine borane complex was written by Patil, Nilesh M.;Bhosale, Manohar A.;Bhanage, Bhalchandra M.. And the article was included in RSC Advances in 2015.Application In Synthesis of 3-Amino-4-methylbenzonitrile This article mentions the following:

This work reports a simple and highly efficient protocol for reduction of nitroarenes to corresponding amines via dehydrogenation of dimethylamine borane using palladium nanoparticles (Pd NPs) as a versatile heterogeneous catalyst. The facile approach for the synthesis of Pd NPs within 15 min in aqueous medium has been reported. The Pd NPs were well characterized using various anal. techniques such as X-ray diffraction (XRD), field emission gun scanning electron microscope (FEG-SEM), transmission electron microscopy (TEM), energy dispersive X-ray spectrum (EDAX) and X-ray photoelectron spectrum (XPS). The developed catalytic system uses environmentally benign dimethylamine borane as a reducing agent which is highly stable, water soluble and nontoxic. The various amines were synthesized from nitroarenes in excellent yields within 10-60 min at room temperature The catalyst was reused up to four successive cycles without significant loss in its catalytic activity. In the experiment, the researchers used many compounds, for example, 3-Amino-4-methylbenzonitrile (cas: 60710-80-7Application In Synthesis of 3-Amino-4-methylbenzonitrile).

3-Amino-4-methylbenzonitrile (cas: 60710-80-7) 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. 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.Application In Synthesis of 3-Amino-4-methylbenzonitrile

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts

Veguillas, Marcos et al. published their research in European Journal of Organic Chemistry in 2016 | CAS: 101219-69-6

(R)-4-(1-Hydroxyethyl)benzonitrile (cas: 101219-69-6) belongs to nitriles. The R-C-N bond angle in and nitrile is 180° 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 π bond in the triple bond. 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 101219-69-6

Catalytic Asymmetric Addition of Organolithium Reagents to Aldehydes was written by Veguillas, Marcos;Sola, Ricard;Shaw, Luke;Macia, Beatriz. And the article was included in European Journal of Organic Chemistry in 2016.Related Products of 101219-69-6 This article mentions the following:

Herein we report an efficient catalytic system for the titanium-promoted enantioselective addition of organolithium reagents to aldehydes, based on chiral Ar-BINMOL ligands. Unprecedented yields and enantioselectivities are achieved in the alkylation reactions of aliphatic aldehydes. Remarkably, methyllithium can be added to a wide variety of aromatic and aliphatic aldehydes, providing versatile chiral Me carbinol units in a simple one-pot procedure under mild conditions and in very short reaction times. In the experiment, the researchers used many compounds, for example, (R)-4-(1-Hydroxyethyl)benzonitrile (cas: 101219-69-6Related Products of 101219-69-6).

(R)-4-(1-Hydroxyethyl)benzonitrile (cas: 101219-69-6) belongs to nitriles. The R-C-N bond angle in and nitrile is 180° 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 π bond in the triple bond. 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 101219-69-6

Referemce:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts