34801-11-1Relevant academic research and scientific papers
Application of a 2-aryl indenylphosphine ligand in the Buchwald-Hartwig cross-coupling reactions of aryl and heteroaryl chlorides under the solvent-free and aqueous conditions
Liu, Yan,Yuan, Jia,Wang, Zi-Fei,Zeng, Si-Hao,Gao, Meng-Yue,Ruan, Mei-Lin,Chen, Jian,Yu, Guang-Ao
supporting information, p. 5805 - 5810 (2017/07/22)
An efficient solvent-free protocol for the Buchwald-Hartwig cross-coupling reaction of aryl and heteroaryl chlorides with primary and secondary amines using the Pd(dba)2/ligand 1 catalytic system has been developed. Notably, the catalytic system also efficiently catalyzed the reaction under aqueous conditions.
Smiles rearrangement for the synthesis of diarylamines
Tian, Xiao,Wu, Ren-Min,Liu, Gang,Li, Zhu-Bo,Wei, He-Lin,Yang, Hao,Shin, Dong-Soo,Wang, Li-Ying,Zuo, Hua
experimental part, p. 118 - 126 (2011/10/02)
A protocol for the one-pot synthesis of diarylamines via Smiles rearrangement under microwave irradiation has been developed. Various diarylamines were effectively synthesized starting from readily available substituted phenols, arylamines and chloroacetyl chloride in moderate to good yields (58-92%). ARKAT-USA, Inc.
Pyrrole-2-carboxylic acid as a ligand for the Cu-catalyzed reactions of primary anilines with aryl halides
Altman, Ryan A.,Anderson, Kevin W.,Buchwald, Stephen L.
, p. 5167 - 5169 (2008/12/20)
(Chemical Equation Presented) Pyrrole 2-carboxylic acid (L5) was found to be an effective ligand for the Cu-catalyzed monoarylation of anilines with aryl iodides and bromides. Under the reported conditions (10% CuI/20% L5/DMSO/K 3PO4
ALIPHATIC C-H, N-INSERTION VERSUS AROMATIC N-SUBSTITUTION IN THE REACTION OF ARYLNITRENIUM-BORON TRIFLUORIDE COMPLEXES WITH METHYLATED BENZENES
Spagnolo, Piero,Zanirato, Paolo
, p. 961 - 964 (2007/10/02)
The boron trifluoride promoted decomposition of a number of substituted phenyl azides in toluene, para-xylene, meta-xylene or mesitylene at 60 gradC, leads preferentially to N-benzylamines or diarylamines depending on both ring substituent effect and nucleophilic character of the solvent.
