Literature DB >> 31638807

Mechanistic Insights into the Chemo- and Regio-Selective B(C6F5)3 Catalyzed C-H Functionalization of Phenols with Diazoesters.

Qi Zhang1, Xiao-Fei Zhang1, Mo Li1, Cheng Li1, Jia-Qin Liu1, Yuan-Ye Jiang2, Xin Ji3, Lu Liu3, Yu-Cheng Wu4.   

Abstract

The Lewis acidic B(C6F5)3 was recently demonstrated to be effective for the C-H alkylation of phenols with diazoesters. The method avoids the general hydroxyl activation in transition-metal catalysis. Ortho-selective C-H alkylation occurs regardless of potential para-selective C-H alkylation and O-H alkylation. In the present study, a theoretical calculation was carried out to elucidate the reaction mechanism and the origin of chemo- and regio-selectivity. It is found that the previously proposed B(C6F5)3/N or B(C6F5)3/C bonding-involved mechanisms are not favorable, and a more favored one involves the B(C6F5)3/C═O bonding, rate-determining N2 elimination, selectivity-determining electrophilic attack, and proton transfer steps. Meanwhile, the new mechanism is consistent with KIE and competition experiments. The facility of the mechanism is attributed to two factors. First, the B(C6F5)3/C═O bonding reduces the steric hindrance during electrophilic attack. Second, the bonding forms the conjugated system by which the LUMO energy is reduced via the electron-withdrawing B(C6F5)3. The ortho-selectivity resulted from the greater ortho-C-C (than para-C-C) interaction and the O-H···O and O-H···F hydrogen-bond interaction during electrophilic attack. The greater C-C (than C-O) interaction and the π-π stacking between the benzene rings of phenol and diazoester concerted contribute to the chemo-selective C-H alkylation.

Entities:  

Year:  2019        PMID: 31638807     DOI: 10.1021/acs.joc.9b02035

Source DB:  PubMed          Journal:  J Org Chem        ISSN: 0022-3263            Impact factor:   4.354


  3 in total

1.  Overcoming O-H Insertion to Para-Selective C-H Functionalization of Free Phenols: Rh(II)/Xantphos Catalyzed Geminal Difunctionalization of Diazo Compounds.

Authors:  Yang Yang; Bin Lu; Guiqing Xu; Xiaoming Wang
Journal:  ACS Cent Sci       Date:  2022-04-20       Impact factor: 18.728

2.  DFT Mechanistic Study of the Cyclopropanation of Styrene and Aryldiazodiacetate Catalyzed by Tris(pentafluorophenyl)borane.

Authors:  Xiuling Wen; Peiquan Lu; Yong Shen; Haojie Peng; Zhuofeng Ke; Cunyuan Zhao
Journal:  ACS Omega       Date:  2022-04-07

3.  Understanding the Influence of Donor-Acceptor Diazo Compounds on the Catalyst Efficiency of B(C6 F5 )3 Towards Carbene Formation.

Authors:  Rasool Babaahmadi; Ayan Dasgupta; Christopher J T Hyland; Brian F Yates; Rebecca L Melen; Alireza Ariafard
Journal:  Chemistry       Date:  2022-01-27       Impact factor: 5.020

  3 in total

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