121577-74-0Relevant academic research and scientific papers
Electrochemical Synthesis of Carbodiimides via Metal/Oxidant-Free Oxidative Cross-Coupling of Amines and Isocyanides
Badsara, Satpal Singh,Jaiswal, Pradeep K.,Malviya, Bhanwar Kumar,Sharma, Siddharth,Verma, Ved Prakash
supporting information, (2020/03/19)
This work discloses an electrochemical oxidative cross-coupling of amines with aryl and aliphatic isocyanides. In an undivided cell, the reaction proceeds without involving any transition-metal catalyst, oxidant, or toxic reagents providing carbodiimides in good yields, thereby circumventing stoichiometric chemical oxidants, with H2 as the only byproduct. Moreover, carbodiimides were in situ converted into unsymmetrical ureas in moderate to good yields using an electricity ON-OFF strategy.
1,2,3- and 1,2,4-triazolium salts, pyrazoles, and quinoxalines from diarylnitrilimines and isocyanides: A study of the scope
Moderhack, Dietrich,Daoud, Ali
, p. 625 - 637 (2007/10/03)
Formation of the four title compounds has been found to be strongly dependent on substituents: 1,2,3-Triazolium salts 6 do not arise from nitrilimines 2 that have an electron- acceptor attached to either the C- or the N-phenyl group. Likewise tert-butyl and aryl isocyanides do not afford this class of compounds; from the former isocyanide, dequaternization products 7 are obtained instead, whereas from the latter 1,2,4-triazolium salts 11 are formed. Compounds 11 with a tert-butyl group at the ring are unstable too, giving rise to triazoles 13. Pyrazole formation (analogues of 14) is completely suppressed when both tert-butyl and aryl isocyanides are used, whereas access to this ring system works best with sec-alkyl isocyanides (the influence of substituents of 2 being almost negligible in this case). Formation of quinoxalines 23 which arise from intermediary 1,2-diazets 22 by ring expansion is much favoured on employment of 2 that bears a donator substituent at the N-phenyl group, and under this premise ring closure to 22 is virtually independent on the nature of the isocyanide. Formation of 23 is not observed with 2 having acceptor groups.
Highly Enantioselective Synthesis of 1,3-Oxazolidin-2-imine Derivatives by Asymmetric Cycloaddition Reactions of Vinyloxiranes with Unsymmetrical Carbodiimides Catalyzed by Palladium(0) Complexes
Larksarp, Chitchamai,Alper, Howard
, p. 6229 - 6233 (2007/10/03)
4-Vinyl-1,3-oxazoilidin-2-imine derivatives have been synthesized by cycloaddition reactions of 2-vinyloxiranes with unsymmetrical carbodiimides catalyzed by palladium(0) complexes in excellent total isolated yields. After reaction two compounds were alwa
N,N-Dialkylcarbodiimide synthesis by palladium-catalysed coupling of amines with isonitriles
Pri-Bar, Ilan,Schwartz, Jeffrey
, p. 347 - 348 (2007/10/03)
Catalytic condensation of amines and isonitriles can be accomplished efficiently at 100°C using a palladium complex catalyst, oxygen, and iodine to give N,N-dialkylcarbodiimides.
Synthesis and antiinflammatory and analgesic properties of 2-amino-1H-benzimidazole and 1,2-dihydro-2-iminocycloheptimidazole derivatives
Taniguchi,Shigenaga,Ogahara,Fujitsu,Matsuo
, p. 301 - 309 (2007/10/02)
2-Amino-1H-benzimidazoles (3) and 1,2-dihydro-2-iminocycloheptimidazoles (4) were synthesized and evaluated for antiinflammatory and analgesic activities. The compounds in the series 3 were synthesized via phenylthioureas (6) or 2-chloro-1H-benzimidazole
