Lumeras, Wenceslao’s team published research in Journal of Medicinal Chemistry in 2009 | CAS: 70298-88-3

2,2-Dimehtyl-N-pyridin-3-yl-propionamide(cas: 70298-88-3) belongs to anime. In organic chemistry, amines are compounds and functional groups that contain a basic nitrogen atom with a lone pair. Amines are formally derivatives of ammonia (NH3), wherein one or more hydrogen atoms have been replaced by a substituent such as an alkyl or aryl group (these may respectively be called alkylamines and arylamines; amines in which both types of substituent are attached to one nitrogen atom may be called alkylarylamines).SDS of cas: 70298-88-3

SDS of cas: 70298-88-3On September 10, 2009 ,《Design, Synthesis, and Structure-Activity Relationships of Aminopyridine N-Oxides, a Novel Scaffold for the Potent and Selective Inhibition of p38 Mitogen Activated Protein Kinase》 was published in Journal of Medicinal Chemistry. The article was written by Lumeras, Wenceslao; Caturla, Francisco; Vidal, Laura; Esteve, Cristina; Balague, Cristina; Orellana, Adelina; Dominguez, Maria; Roca, Ramon; Huerta, Josep M.; Godessart, Nuria; Vidal, Bernat. The article contains the following contents:

A novel series of aminopyridine N-oxides, e.g. I, were designed, synthesized, and tested for their ability to inhibit p38α MAP kinase. Some of these compounds showed a significant reduction in the LPS-induced TNFα production in human whole blood. Structure-activity relationship studies revealed that N-oxide oxygen was essential for activity and was probably a determinant factor for a marked selectivity against other related kinases. Compound I was identified as a potent and selective p38α inhibitor with an appropriate balance between potency and pharmacokinetics. In vivo efficacy of I was demonstrated in reducing TNFα levels in an acute murine model of inflammation (ED50 = 1 mg/kg in LPS-induced TNFα production when dosed orally 1.5 h prior to LPS administration). The oral efficacy of I was further demonstrated in a chronic model of adjuvant arthritis in rats with established disease when administered orally (ED50 = 4.5 mg/kg). The experimental process involved the reaction of 2,2-Dimehtyl-N-pyridin-3-yl-propionamide(cas: 70298-88-3SDS of cas: 70298-88-3)

2,2-Dimehtyl-N-pyridin-3-yl-propionamide(cas: 70298-88-3) belongs to anime. In organic chemistry, amines are compounds and functional groups that contain a basic nitrogen atom with a lone pair. Amines are formally derivatives of ammonia (NH3), wherein one or more hydrogen atoms have been replaced by a substituent such as an alkyl or aryl group (these may respectively be called alkylamines and arylamines; amines in which both types of substituent are attached to one nitrogen atom may be called alkylarylamines).SDS of cas: 70298-88-3

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics

Schwartz, Brett D.’s team published research in Chemistry – A European Journal in 2020 | CAS: 87694-50-6

(S)-N-Methyl-N-methoxy-2-(tert-butoxycarbonylamino)-4-methylpentanamide(cas: 87694-50-6) belongs to amides. Because of the greater electronegativity of oxygen, the carbonyl (C=O) is a stronger dipole than the N–C dipole.Related Products of 87694-50-6 The presence of a C=O dipole and, to a lesser extent a N–C dipole, allows amides to act as H-bond acceptors. In primary and secondary amides, the presence of N–H dipoles allows amides to function as H-bond donors as well.

Related Products of 87694-50-6On March 4, 2020, Schwartz, Brett D.; Zhang, Meng Yao; Attard, Riley H.; Gardiner, Michael G.; Malins, Lara R. published an article in Chemistry – A European Journal. The article was 《Structurally Diverse Acyl Bicyclobutanes: Valuable Strained Electrophiles》. The article mentions the following:

This work reported two efficient pathways for the rapid preparation of over 20 structurally diverse bicyclo[1.1.0]butane (BCB) ketones, such as I [R = cuban-1-yl, BOCHNCH2, 4-MeOC6H4, etc.] encompassing simple alkyl and aryl derivatives, as well as unprecedented amino acid, dipeptide, bioisostere, and bifunctional linchpin reagents currently inaccessible using literature methods. Analogs were readily forged in two steps and in high yields from simple carboxylic acids or through unsym. ketone synthesis beginning with a convenient carbonyl dication equivalent The utility of this novel toolbox of strained electrophiles for selective modification of proteinogenic nucleophiles was highlighted. The results came from multiple reactions, including the reaction of (S)-N-Methyl-N-methoxy-2-(tert-butoxycarbonylamino)-4-methylpentanamide(cas: 87694-50-6Related Products of 87694-50-6)

(S)-N-Methyl-N-methoxy-2-(tert-butoxycarbonylamino)-4-methylpentanamide(cas: 87694-50-6) belongs to amides. Because of the greater electronegativity of oxygen, the carbonyl (C=O) is a stronger dipole than the N–C dipole.Related Products of 87694-50-6 The presence of a C=O dipole and, to a lesser extent a N–C dipole, allows amides to act as H-bond acceptors. In primary and secondary amides, the presence of N–H dipoles allows amides to function as H-bond donors as well.

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics

Fiakpui, Charles Y.’s team published research in Canadian Journal of Chemistry in 1987 | CAS: 70298-88-3

2,2-Dimehtyl-N-pyridin-3-yl-propionamide(cas: 70298-88-3) belongs to anime. Large quantities of aliphatic amines are made synthetically. The most widely used industrial method is the reaction of alcohols with ammonia at a high temperature, catalyzed by metals or metal oxide catalysts (e.g., nickel or copper). Mixtures of primary, secondary, and tertiary amines are thereby produced.Formula: C10H14N2O

Fiakpui, Charles Y.; Knaus, Edward E. published an article in Canadian Journal of Chemistry. The title of the article was 《An improved synthesis of 1,3-dihydro-1-methyl-5-phenyl-2H-pyrido[3,4-e]-1,4-diazepin-2-one via ortho-directed lithiation of 3-[(tert-butylcarbonyl)- and 3-[(tert-butoxycarbonyl)amino)pyridine]》.Formula: C10H14N2O The author mentioned the following in the article:

The ortho-directed lithiation of the title compounds I (R = CMe3, OCMe3) with alkyllithiums and benzoylation with PhCONEt2 followed by acid hydrolysis gave 63-66% 3-amino-4-benzoylpyridine (II). Amidation of R1NHCH2CO2H (R1 = PhCH2O2C, Me3CO2C) with II afforded[[(aminomethyl)carbonyl]amino]benzoylpyridines III (same R1). Acid-catalyzed hydrolysis and cyclocondensation of III, followed by methylation gave pyridodiazepinone IV in 36% overall yield from I.2,2-Dimehtyl-N-pyridin-3-yl-propionamide(cas: 70298-88-3Formula: C10H14N2O) was used in this study.

2,2-Dimehtyl-N-pyridin-3-yl-propionamide(cas: 70298-88-3) belongs to anime. Large quantities of aliphatic amines are made synthetically. The most widely used industrial method is the reaction of alcohols with ammonia at a high temperature, catalyzed by metals or metal oxide catalysts (e.g., nickel or copper). Mixtures of primary, secondary, and tertiary amines are thereby produced.Formula: C10H14N2O

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics

Pehere, Ashok D.’s team published research in Bioorganic & Medicinal Chemistry in 2019 | CAS: 87694-50-6

(S)-N-Methyl-N-methoxy-2-(tert-butoxycarbonylamino)-4-methylpentanamide(cas: 87694-50-6) belongs to amides. Amides include many other important biological compounds, as well as many drugs like paracetamol, penicillin and LSD. Low-molecular-weight amides, such as dimethylformamide, are common solvents.Synthetic Route of C13H26N2O4

Pehere, Ashok D.; Nguyen, Steven; Garlick, Sarah K.; Wilson, Danny W.; Hudson, Irene; Sykes, Matthew J.; Morton, James D.; Abell, Andrew D. published an article on January 15 ,2019. The article was titled 《Tripeptide analogues of MG132 as protease inhibitors》, and you may find the article in Bioorganic & Medicinal Chemistry.Synthetic Route of C13H26N2O4 The information in the text is summarized as follows:

The 26S proteasome and calpain are linked to a number of important human diseases. Here, we report a series of analogs of the prototypical tripeptide aldehyde inhibitor MG132 that show a unique combination of high activity and selectivity for calpains over proteasome. Tripeptide aldehydes (1-3) with an aromatic P3 substituent show enhanced activity and selectivity against ovine calpain 2 relative to chymotrypsin-like activity of proteasome. Docking studies reveal the key contacts between inhibitors and calpain to confirm the importance of the S3 pocket with respect to selectivity between calpains 1 and 2 and the proteasome.(S)-N-Methyl-N-methoxy-2-(tert-butoxycarbonylamino)-4-methylpentanamide(cas: 87694-50-6Synthetic Route of C13H26N2O4) was used in this study.

(S)-N-Methyl-N-methoxy-2-(tert-butoxycarbonylamino)-4-methylpentanamide(cas: 87694-50-6) belongs to amides. Amides include many other important biological compounds, as well as many drugs like paracetamol, penicillin and LSD. Low-molecular-weight amides, such as dimethylformamide, are common solvents.Synthetic Route of C13H26N2O4

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics

Mutra, Mohana Reddy’s team published research in Advanced Synthesis & Catalysis in 2018 | CAS: 4746-61-6

2-Hydroxy-N-phenylacetamide(cas: 4746-61-6) belongs to amides.Application of 4746-61-6 The solubilities of amides and esters are roughly comparable. Typically amides are less soluble than comparable amines and carboxylic acids since these compounds can both donate and accept hydrogen bonds.

The author of 《Mild Access to N-Formylation of Primary Amines using Ethers as C1 Synthons under Metal-Free Conditions》 were Mutra, Mohana Reddy; Dhandabani, Ganesh Kumar; Wang, Jeh-Jeng. And the article was published in Advanced Synthesis & Catalysis in 2018. Application of 4746-61-6 The author mentioned the following in the article:

A new synthetic protocol for the synthesis of N-formamide derivatives HC(O)NHR1 [R1 = C6H5, 3-ClC6H4, 3-NO2C6H4, etc.] was developed via N-formylation of primary amines using ethers as a C1 synthon under metal-free reaction conditions. The reaction was proceeded through C-H functionalization, C-O cleavage and C-N bond formation. Mechanistic studies disclosed that the reaction proceeds through a radical pathway. Synthesis of amino ethanones PhNHCH(R4)C(O)R2 [R2 = C6H5, 3-MeC6H4, 4-BrC6H4; R3 = tetrahydrofuran-2-yl, 1,4-dioxan-2-yl] were developed via α-alkylation of α-amino ketones with ethers. By replacing dioxane with Tetramethylethylenediamine (TMEDA) under standard conditions also gave the N-formamide derivatives HC(O)NHR1 in moderate yields. After reading the article, we found that the author used 2-Hydroxy-N-phenylacetamide(cas: 4746-61-6Application of 4746-61-6)

2-Hydroxy-N-phenylacetamide(cas: 4746-61-6) belongs to amides.Application of 4746-61-6 The solubilities of amides and esters are roughly comparable. Typically amides are less soluble than comparable amines and carboxylic acids since these compounds can both donate and accept hydrogen bonds.

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics

Zaiter, Samantha S.’s team published research in Journal of Medicinal Chemistry in 2019 | CAS: 2418-95-3

H-Lys(Boc)-OH(cas: 2418-95-3) belongs to amino acids. In addition to subunits of proteins, amino acids have many other functions as well, including osmoregulation (proline), neurotransmitters (gamma-aminobutyric acid), metabolic intermediates (ornithine and citrulline), and inhibitors (dehydroproline).COA of Formula: C11H22N2O4

Zaiter, Samantha S.; Huo, Yuantao; Tiew, Fong Y.; Gestwicki, Jason E.; McAlpine, Shelli R. published an article on January 24 ,2019. The article was titled 《Designing de Novo Small Molecules That Control Heat Shock Protein 70 (Hsp70) and Heat Shock Organizing Protein (HOP) within the Chaperone Protein-Folding Machinery》, and you may find the article in Journal of Medicinal Chemistry.COA of Formula: C11H22N2O4 The information in the text is summarized as follows:

Protein-protein interactions (PPIs) regulate all signaling pathways for cellular function. Developing mols. that modulate PPIs through the interface of their protein surfaces has been a significant challenge and there has been little success controlling PPIs through standard mol. library screening approaches. PPIs control the cell’s protein-folding machinery, and this machinery relies on a multi-protein complex formed with heat shock protein 70 (Hsp70). Described is the design, synthesis, and biol. evaluation of mols. aimed to regulate the interaction between two proteins that are critical to the protein-folding machinery: heat shock protein 70 (Hsp70) and cochaperone heat shock organizing protein (HOP). We report the first class of compounds that directly regulate these two protein-protein interactions and inhibit protein folding events. In the experiment, the researchers used many compounds, for example, H-Lys(Boc)-OH(cas: 2418-95-3COA of Formula: C11H22N2O4)

H-Lys(Boc)-OH(cas: 2418-95-3) belongs to amino acids. In addition to subunits of proteins, amino acids have many other functions as well, including osmoregulation (proline), neurotransmitters (gamma-aminobutyric acid), metabolic intermediates (ornithine and citrulline), and inhibitors (dehydroproline).COA of Formula: C11H22N2O4

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics

Koivisto, Jari J.’s team published research in Organic & Biomolecular Chemistry in 2010 | CAS: 71432-55-8

tert-Butyl N,N’-diisopropylcarbamimidate(cas: 71432-55-8) belongs to anime. Amines characteristically form salts with acids; a hydrogen ion, H+, adds to the nitrogen. With the strong mineral acids (e.g., H2SO4, HNO3, and HCl), the reaction is vigorous. Salt formation is instantly reversed by strong bases such as NaOH. Neutral electrophiles (compounds attracted to regions of negative charge) also react with amines; alkyl halides (R′X) and analogous alkylating agents are important examples of electrophilic reagents.Synthetic Route of C11H24N2O

In 2010,Koivisto, Jari J.; Kumpulainen, Esa T. T.; Koskinen, Ari M. P. published 《Conformational ensembles of flexible β-turn mimetics in DMSO-d6》.Organic & Biomolecular Chemistry published the findings.Synthetic Route of C11H24N2O The information in the text is summarized as follows:

β-Turns play an important role in peptide and protein chem., biophysics, and bioinformatics. The aim of this research was to study short linear peptides that have a high propensity to form β-turn structures in solution In particular, we examined conformational ensembles of β-turn forming peptides with a general sequence CBz-L-Ala-L-Xaa-Gly-L-Ala-OtBu. These tetrapeptides, APGA, A(4R)MePGA, and A(4S)MePGA, incorporate proline, (4R)-methylproline, and (4S)-methylproline, resp., at the Xaa position. To determine the influence of the 4-Me substituted prolines on the β-turn populations, the NAMFIS (NMR anal. of mol. flexibility in solution) deconvolution anal. for these three peptides were performed in DMSO-d6 solution The NBO (natural bond orbital) method was employed to gain further insight into the results obtained from the NAMFIS anal. The emphasis in the NBO anal. was to characterize remote intramol. interactions that could influence the backbone-backbone interactions contributing to β-turn stability. NAMFIS results indicate that the enantiospecific incorporation of the Me substituent at the Cγ (C4) position of the proline residue can be used to selectively control the pyrrolidine ring puckering propensities and, consequently, the preferred ϕ,ψ angles associated with the proline residue in β-turn forming peptides. The NAMFIS analyses show that the presence of (4S)-methylproline in A(4S)MePGA considerably increased the type II β-turn population with respect to APGA and A(4R)MePGA. The NBO calculations suggest that this observation can be rationalized based on an n → π* interaction between the N-terminus alanine carbonyl oxygen and the proline carbonyl group. Several other interactions between remote orbitals in these peptides provide a more detailed explanation for the observed population distributions. In addition to this study using tert-Butyl N,N’-diisopropylcarbamimidate, there are many other studies that have used tert-Butyl N,N’-diisopropylcarbamimidate(cas: 71432-55-8Synthetic Route of C11H24N2O) was used in this study.

tert-Butyl N,N’-diisopropylcarbamimidate(cas: 71432-55-8) belongs to anime. Amines characteristically form salts with acids; a hydrogen ion, H+, adds to the nitrogen. With the strong mineral acids (e.g., H2SO4, HNO3, and HCl), the reaction is vigorous. Salt formation is instantly reversed by strong bases such as NaOH. Neutral electrophiles (compounds attracted to regions of negative charge) also react with amines; alkyl halides (R′X) and analogous alkylating agents are important examples of electrophilic reagents.Synthetic Route of C11H24N2O

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics

Mackman, Richard L.’s team published research in Journal of Medicinal Chemistry in 2018 | CAS: 78191-00-1

N-Methoxy-N-methylacetamide(cas: 78191-00-1) belongs to anime. The reaction of alkyl halides, R―X, where X is a halogen, or analogous reagents with ammonia (or amines) is useful with certain compounds. Not all alkyl halides are effective reagents; the reaction is sluggish with secondary alkyl groups and fails with tertiary ones. Its usefulness is largely confined to primary alkyl halides (those having two hydrogen atoms on the reacting site).Name: N-Methoxy-N-methylacetamide

In 2018,Mackman, Richard L.; Steadman, Victoria A.; Dean, David K.; Jansa, Petr; Poullennec, Karine G.; Appleby, Todd; Austin, Carol; Blakemore, Caroline A.; Cai, Ruby; Cannizzaro, Carina; Chin, Gregory; Chiva, Jean-Yves C.; Dunbar, Neil A.; Fliri, Hans; Highton, Adrian J.; Hui, Hon; Ji, Mingzhe; Jin, Haolun; Karki, Kapil; Keats, Andrew J.; Lazarides, Linos; Lee, Yu-Jen; Liclican, Albert; Mish, Michael; Murray, Bernard; Pettit, Simon B.; Pyun, Peter; Sangi, Michael; Santos, Rex; Sanvoisin, Jonathan; Schmitz, Uli; Schrier, Adam; Siegel, Dustin; Sperandio, David; Stepan, George; Tian, Yang; Watt, Gregory M.; Yang, Hai; Schultz, Brian E. published 《Discovery of a potent and orally bioavailable cyclophilin inhibitor derived from the sanglifehrin macrocycle》.Journal of Medicinal Chemistry published the findings.Name: N-Methoxy-N-methylacetamide The information in the text is summarized as follows:

Cyclophilins are a family of peptidyl-prolyl isomerases that are implicated in a wide range of diseases including hepatitis C. Our aim was to discover through total synthesis an orally bioavailable, non-immunosuppressive cyclophilin (Cyp) inhibitor with potent anti-hepatitis C virus (HCV) activity that could serve as part of an all oral antiviral combination therapy. An initial lead (I) derived from the sanglifehrin A macrocycle was optimized using structure based design to produce a potent and orally bioavailable inhibitor (II). The macrocycle ring size was reduced by one atom, and an internal hydrogen bond drove improved permeability and drug-like properties. II demonstrates potent Cyp inhibition (Kd = 5 nM), potent anti-HCV 2a activity (EC50 = 98 nM), and high oral bioavailability in rat (100%) and dog (55%). The synthetic accessibility and properties of II support its potential as an anti-HCV agent and for interrogating the role of Cyp inhibition in a variety of diseases. In the experimental materials used by the author, we found N-Methoxy-N-methylacetamide(cas: 78191-00-1Name: N-Methoxy-N-methylacetamide)

N-Methoxy-N-methylacetamide(cas: 78191-00-1) belongs to anime. The reaction of alkyl halides, R―X, where X is a halogen, or analogous reagents with ammonia (or amines) is useful with certain compounds. Not all alkyl halides are effective reagents; the reaction is sluggish with secondary alkyl groups and fails with tertiary ones. Its usefulness is largely confined to primary alkyl halides (those having two hydrogen atoms on the reacting site).Name: N-Methoxy-N-methylacetamide

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics

Thota, Ganesh Kumar’s team published research in Advanced Synthesis & Catalysis in 2018 | CAS: 78191-00-1

N-Methoxy-N-methylacetamide(cas: 78191-00-1) belongs to anime. Milder oxidation, using reagents such as NaOCl, can remove four hydrogen atoms from primary amines of the type RCH2NH2 to form nitriles (R―C≡N), and oxidation with reagents such as MnO2 can remove two hydrogen atoms from secondary amines (R2CH―NHR′) to form imines (R2C=NR′). Tertiary amines can be oxidized to enamines (R2C=CHNR2) by a variety of reagents.Formula: C4H9NO2

In 2018,Thota, Ganesh Kumar; Sun, Gui-Jun; Deng, Tao; Li, Yi; Kang, Qiang published 《Enantioselective Conjugate Addition of 2-Acylimidazoles with Nitroalkenes Promoted by Chiral-at-Metal Rhodium(III) Complexes》.Advanced Synthesis & Catalysis published the findings.Formula: C4H9NO2 The information in the text is summarized as follows:

An enantioselective conjugate addition of 2-acylimidazoles with nitroalkenes catalyzed by chiral-at-metal rhodium(III) complex under mild reaction conditions was developed, affording versatile γ-nitro ketone skeletons in good yields with excellent enantioselectivities (up to >99% ee).N-Methoxy-N-methylacetamide(cas: 78191-00-1Formula: C4H9NO2) was used in this study.

N-Methoxy-N-methylacetamide(cas: 78191-00-1) belongs to anime. Milder oxidation, using reagents such as NaOCl, can remove four hydrogen atoms from primary amines of the type RCH2NH2 to form nitriles (R―C≡N), and oxidation with reagents such as MnO2 can remove two hydrogen atoms from secondary amines (R2CH―NHR′) to form imines (R2C=NR′). Tertiary amines can be oxidized to enamines (R2C=CHNR2) by a variety of reagents.Formula: C4H9NO2

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics

van Leest, Nicolaas P.’s team published research in Chemistry – A European Journal in 2019 | CAS: 70-55-3

4-Methylbenzenesulfonamide(cas: 70-55-3) belongs to anime. Aniline, ethanolamines, and several other amines are major industrial commodities used in making rubber, dyes, pharmaceuticals, and synthetic resins and fibres and for a host of other applications. Most of the numerous methods for the preparation of amines may be broadly divided into two groups: (1) chemical reduction (replacement of oxygen with hydrogen atoms in the molecule) of members of several other classes of organic nitrogen compounds and (2) reactions of ammonia or amines with organic compounds.Category: amides-buliding-blocks

In 2019,Chemistry – A European Journal included an article by van Leest, Nicolaas P.; Grooten, Lars; van der Vlugt, Jarl Ivar; de Bruin, Bas. Category: amides-buliding-blocks. The article was titled 《Uncatalyzed Oxidative C-H Amination of 9,10-Dihydro-9-Heteroanthracenes: A Mechanistic Study》. The information in the text is summarized as follows:

A new method for the one-step C-H amination of xanthene and thioxanthene with sulfonamides is reported, without the need for any metal catalyst. A benzoquinone was employed as a hydride (or two-electron and one-proton) acceptor. Moreover, a previously unknown and uncatalyzed reaction between iminoiodanes and xanthene, thioxanthene and dihydroacridines (9,10-dihydro-9-heteroanthracenes or dihydroheteroanthracenes) is disclosed. The reactions proceed through hydride transfer from the heteroarene substrate to the iminoiodane or benzoquinone, followed by conjugate addition of the sulfonamide to the oxidized heteroaromatic compounds These findings may have important mechanistic implications for metal-catalyzed C-H amination processes involving nitrene transfer from iminoiodanes to dihydroheteroanthracenes. Due to the weak C-H bond, xanthene is an often-employed substrate in mechanistic studies of C-H amination reactions, which are generally proposed to proceed via metal-catalyzed nitrene insertion, especially for reactions involving nitrene or imido complexes that are less reactive (i.e., less strongly oxidizing). However, these substrates clearly undergo non-catalyzed (proton-coupled) redox coupling with amines, thus providing alternative pathways to the widely assumed metal-catalyzed pathways. In the experiment, the researchers used 4-Methylbenzenesulfonamide(cas: 70-55-3Category: amides-buliding-blocks)

4-Methylbenzenesulfonamide(cas: 70-55-3) belongs to anime. Aniline, ethanolamines, and several other amines are major industrial commodities used in making rubber, dyes, pharmaceuticals, and synthetic resins and fibres and for a host of other applications. Most of the numerous methods for the preparation of amines may be broadly divided into two groups: (1) chemical reduction (replacement of oxygen with hydrogen atoms in the molecule) of members of several other classes of organic nitrogen compounds and (2) reactions of ammonia or amines with organic compounds.Category: amides-buliding-blocks

Referemce:
Amide – Wikipedia,
Amide – an overview | ScienceDirect Topics