102912-87-8Relevant academic research and scientific papers
CuO nanoparticle catalysed synthesis of 2H-indazoles under ligand free conditions
Khatun, Nilufa,Gogoi, Anupal,Basu, Pallabita,Das, Prasenjit,Patel, Bhisma K.
, p. 4080 - 4084 (2014)
A CuO nano catalysed one-pot synthesis of 2H-indazoles has been devised from easily accessible starting materials viz. 2-bromobenzaldehydes, primary amines and sodium azide under ligand free conditions. The nano CuO catalyst played an important role during the formation of the intermolecular C-N bond followed by the intramolecular N-N bond, providing 2H-indazoles. This method has a broad substrate scope with a high tolerance of a variety of functional groups. The catalyst can be recycled up to three times, however with slight decreases in the yields each time.
A Short Approach to N -Aryl-1,2,3,4-tetrahydroisoquinolines from N -(2-Bromobenzyl)anilines via a Reductive Amination/Palladium-Catalyzed Ethoxyvinylation/Reductive N -Alkylation Sequence
Glas, Carina,Wirawan, Ricky,Bracher, Franz
, p. 1943 - 1954 (2021/01/18)
N -Aryl-1,2,3,4-tetrahydroisoquinolines are obtained via a convenient and short protocol with a broad range of substituents on both aromatic rings and high functional group tolerance. Starting from readily available ortho -brominated aromatic aldehydes and primary aromatic amines, condensation of these building blocks under reductive conditions gives N -aryl 2-bromobenzylamines. The C-3/C-4-unit of the tetrahydroisoquinoline is introduced using commercially available 2-ethoxyvinyl pinacolboronate under Suzuki conditions. Finally, the obtained crude ortho -ethoxyvinyl benzylamines are cyclized via an intramolecular reductive amination using the combination of triethylsilane/TFA to give the desired N -aryl-1,2,3,4-tetrahydroisoquinolines.
Manganese-Catalyzed Electrochemical Tandem Azidation-Coarctate Reaction: Easy Access to 2-Azo-benzonitriles
Maiti, Debabrata,Mahanty, Kingshuk,De Sarkar, Suman
supporting information, p. 1742 - 1747 (2021/04/05)
A one-pot cascade transformation consisting of an electrochemically driven azidation of 2H-indazole followed by coarctate fragmentation is developed to synthesize the 2-azo-benzonitrile motif. This manganese-catalyzed transformation is external-chemical-oxidant-free and operates at ambient temperature under air. This methodology exhibits good functional group tolerance, affording a broad range of substrate scopes of up to 89% isolated yield. Diverse derivatization of the 2-azo-benzonitrile product resulted in other valuable scaffolds.
Oxidative cross-dehydrogenative coupling (CDC)viaC(sp2)-H bond functionalization:tert-butyl peroxybenzoate (TBPB)-promoted regioselective direct C-3 acylation/benzoylation of 2H-indazoles with aldehydes/benzyl alcohols/styrenes
Sharma, Richa,Yadav, Lalit,Yadav, Ravi Kant,Chaudhary, Sandeep
, p. 14178 - 14192 (2021/04/22)
An efficient, cost-effective, transition-metal-free, oxidative C(sp2)-H/C(sp2)-H cross-dehydrogenative couplingviaa C(sp2)-H bond functionalization protocol for the regioselective direct C-3 acylation/benzoylation of subst
Bu4NI-catalyzed, oxidative C(sp2)-C(sp3)cross dehydrogenative coupling for the regioselective direct C-3 benzylation of 2: H -indazoles
Chaudhary, Sandeep,Yadav, Lalit
, p. 5927 - 5936 (2020/08/21)
A Bu4NI-catalyzed, DTBP-promoted, regioselective C(sp2)-C(sp3) cross dehydrogenative coupling (CDC) protocol for the direct C-3 benzylation of 2H-indazoles is reported. The metal-free protocol is operationally simple and proceeds mechanistically via the g
Ir-Catalyzed C?H Amidation of Aldehydes with Stoichiometric/Catalytic Directing Group
Zhang, Yun-Fei,Wu, Bin,Shi, Zhang-Jie
supporting information, p. 17808 - 17812 (2016/11/28)
Ir-catalyzed sp2C?H amidation of aldehydes with various anilines as stoichiometric or catalytic directing groups was accomplished. A wide range of substrates were selectively amidated in good to excellent yields with broad functional group tolerance. The iridacycle complexes were isolated, characterized, and proved as key intermediates. Kinetic studies and Hammett plots provided detailed understandings of this amidation. According to the mechanism, the electron-rich ArSO2N3was proved effective for intermolecular sp3C?H amidation.
Synthesis of N-benzyl-N-phenylthiophene-2-carboxamide analogues as a novel class of enterovirus 71 inhibitors
Pan, Jiawei,Han, Xin,Sun, Ningyuan,Wu, Haoming,Lin, Dandan,Tien, Po,Zhou, Hai-Bing,Wu, Shuwen
, p. 55100 - 55108 (2015/07/07)
A series of novel human enterovirus 71 inhibitors, N-benzyl-N-phenylthiophene-2-carboxamide analogues, were synthesized and their antiviral activities were evaluated in vitro. Most derivatives of this structure against EV71 had a low micromolar range in the RD (rhabdomyosarcoma) cell lines. The most potent compound 5a, N-(4-bromobenzyl)-N-(4-fluorophenyl)thiophene-2-carboxamide, showed low micromolar activity against EV71 (EC50 = 1.42 μM) compared to the reference anti-EV71 drug enviroxime (EC50 = 0.15 μM). Preliminary SAR studies revealed that the thiophene-2-carboxamide core is crucial for maintaining antiviral activity, and N-substituent phenyl groups largely influenced the anti-EV71 efficacy of this new class of potent antiviral agents.
