18158-72-0Relevant academic research and scientific papers
One-pot facile synthesis, crystal structure and antifungal activity of 1,2,3-triazoles bridged with amine-amide functionalities
Kaushik,Luxmi, Raj,Kumar, Mukesh,Singh, Dharmendra,Kumar, Krishan,Pahwa, Ashima
supporting information, p. 118 - 128 (2019/01/24)
A library of twenty five 1,2,3-triazoles bridged with amine-amide functionalities have been synthesized from reaction of N-substituted(prop-2-yn-1-yl)amines (2a–2e), 2-bromo-N-arylacetamides (4a–4e) and sodium azide through copper(I)-catalyzed alkyne-azide cycloaddition. The synthesized compounds were characterized by using FTIR, 1H NMR, 13C NMR, and HRMS techniques. The structures of synthesized 5a (CCDC 1569245) and 5h (CCDC 1569249) were also confirmed by X-ray crystallography. Antifungal evaluation of newly synthesized triazoles was carried out against–Candida albicans and Aspergillus niger. Biological screening of synthesized 1,2,3-triazoles revealed moderate to good antifungal activity against tested strains.
Electrophilic Amination with Nitroarenes
Rauser, Marian,Ascheberg, Christoph,Niggemann, Meike
supporting information, p. 11570 - 11574 (2017/09/11)
An exceptionally general electrophilic amination, which directly transforms commercially available nitroarenes into alkylated aromatic aminoboranes with zinc organyl compounds was developed. The reaction starts with a two-step partial reduction of the nitro group to a nitrenoid, which is used in situ as the electrophilic amination reagent. To facilitate isolation, the resulting air- and moisture-sensitive aminoboranes were reacted with a range of electrophiles. The method not only represents a direct transformation of nitro compounds into electrophilic amination reagents but also provides an elegant alternative to dehydrocoupling methods for the generation of aminoboranes.
Intramolecular annulation of aromatic rings with N-sulfonyl 1,2,3-triazoles: Divergent synthesis of 3-methylene-2,3-dihydrobenzofurans and 3-methylene-2,3-dihydroindoles
Tang, Xiang-Ying,Zhang, Yong-Sheng,He, Lv,Wei, Yin,Shi, Min
supporting information, p. 133 - 136 (2015/01/09)
The controllable synthesis of 3-methylene-2,3-dihydrobenzofurans 2 and 3-methylene-2,3-dihydroindoles 5 has been developed through Rh-catalyzed intramolecular annulation of aromatic rings with azavinyl carbenes. This journal is
Synthesis of substituted 3-indolylimines and indole-3-carboxaldehydes by rhodium(II)-catalyzed annulation
Rajagopal, Basker,Chou, Chih-Hung,Chung, Ching-Cheng,Lin, Po-Chiao
, p. 3752 - 3755 (2014/08/05)
An efficient Cu/Rh-catalyzed method is proposed for the synthesis of 3-indolylimines from N-propargylanilines through Rh(II)-catalyzed denitrogenative annulation of N-sulfonyl-1,2,3-triazoles. Further combined with hydrolysis or reduction, a one-pot method is developed to enable the direct incorporation of an imine, aldehyde, or amine group into an indole system from an alkyne. A variety of substituted 3-indolylimines, indole-3-carboxaldehydes, and 3-Indolylmethanamines are synthesized in good yields.
The Pyrolysis of N-Allyl Compounds: Free-radical and Retro-ene Mechanisms
Cadogan, J. I. G.,Hickson, Clare L.,McNab, Hamish
, p. 2247 - 2273 (2007/10/02)
Flash vacuum pyrolysis of N-alkyl-N-allylanilines gives imines by free radical cleavage of the allyl group followed by loss of an atom (or group of atoms) from the α-carbon atom of the alkyl group.The corresponding N-propargyl derivatives also give imines on pyrolysis, but the mechanism is a concerted retro-ene process which may lead to different products from the corresponding N-allyl compound.N-Allyl-N,N-dialkylamines also decompose thermally by a retro-ene process
