Theoretical study on the concerted catalysis of Ir/Ni for amino radical transfer for C(sp2)-C(sp3) bond formation

被引:0
|
作者
Li, Hui [1 ,2 ]
Zheng, He [1 ,2 ]
机构
[1] North Minzu Univ, Key Lab Chem Engn & Technol, State Ethn Affairs Commiss, Yinchuan, Peoples R China
[2] North Minzu Univ, Ningxia Key Lab Solar Chem Convers Technol, Yinchuan, Peoples R China
基金
中国国家自然科学基金;
关键词
SINGLE-ELECTRON TRANSMETALATION; COUPLING REACTIONS; NICKEL CATALYSIS; PHOTOREDOX; LIGHT; THERMOCHEMISTRY; ARYLATION; CARBON;
D O I
10.1039/d4dt02567a
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Thomas C. Maier's group has reported a synergistic Ir/Ni catalysis method for the synthesis of C(sp2)-C(sp3) bonds through an amino radical transfer (ART) strategy to generate alkyl radicals. This work employed density functional theory (DFT) to investigate the reaction mechanism, including the redox mechanism of Ir complexes in the generation process of amino radicals, analyzed the role and rationale behind alkyl boronic esters becoming dominant reaction pathways in the ART process, and discussed the competitive reaction mechanisms between oxidative addition and radical capture during C(sp2)-C(sp3) cross-coupling with Ni complexes. Through this theoretical calculation study, we aim to provide a theoretical foundation for constructing key carbon radical intermediates using ART and Ni-complex catalyzed free-radical-involved C(sp2)-C(sp3) cross-coupling reactions.
引用
收藏
页码:18047 / 18053
页数:7
相关论文
共 50 条
  • [21] Photoactive electron donor-acceptor complex platform for Ni-mediated C(sp3)-C(sp2) bond formation
    Kammer, Lisa Marie
    Badir, Shorouk O.
    Hu, Ren-Ming
    Molander, Gary A.
    CHEMICAL SCIENCE, 2021, 12 (15) : 5450 - 5457
  • [22] Co-Catalyzed C(sp3)-C(sp2) bond cleavage via hydrogen atom transfer
    Zhou, Bingqing
    Tian, Di
    An, Jinglin
    Zhou, Yalan
    Yan, Rui
    Song, Hao
    Liu, Xiao-Yu
    Qin, Yong
    ORGANIC CHEMISTRY FRONTIERS, 2022, 9 (08) : 2135 - 2140
  • [23] Recent Advance in Ni-Catalyzed Reductive Cross-Coupling to Construct C(sp2)-C(sp2) and C(sp2)-C(sp3) Bonds
    Li, Yaqiong
    Fan, Yuhang
    Jia, Qianfa
    CHINESE JOURNAL OF ORGANIC CHEMISTRY, 2019, 39 (02) : 350 - 362
  • [24] Catalytic alkylation of unactivated C(sp3)-H bonds for C(sp3)-C(sp3) bond formation
    Chen, Zhen
    Rong, Meng-Yu
    Nie, Jing
    Zhu, Xue-Feng
    Shi, Bing-Feng
    Ma, Jun-An
    CHEMICAL SOCIETY REVIEWS, 2019, 48 (18) : 4921 - 4942
  • [25] Revealing Silylation of C(sp2)/C(sp3)-H Bonds in Arylphosphines by Ruthenium Catalysis
    Wen, Jian
    Dong, Ben
    Zhu, Jinjun
    Zhao, Yue
    Shi, Zhuangzhi
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2020, 59 (27) : 10909 - 10912
  • [26] Revealing Silylation of C(sp2)/C(sp3)-H Bonds in Arylphosphines by Ruthenium Catalysis
    Zheng, Guangfan
    Li, Xingwei
    CHINESE JOURNAL OF ORGANIC CHEMISTRY, 2020, 40 (09) : 2994 - 2996
  • [27] Dealkenylative Thiylation of C(sp3)-C(sp2) Bonds
    Smaligo, Andrew J.
    Kwon, Ohyun
    ORGANIC LETTERS, 2019, 21 (21) : 8592 - 8597
  • [28] C(SP3)-C(SP2) ROTATIONAL BARRIER OF ISOBUTYRAMIDE
    TASAKI, K
    SUTER, UW
    JOURNAL OF PHYSICAL CHEMISTRY, 1988, 92 (21): : 5886 - 5891
  • [29] C-H Bond Activation and Subsequent C(sp2)-C(sp3) Bond Formation: Coupling of Bromomethyl and Triphenylphosphine in an Iridium Complex
    Lin, Yumei
    Xu, Hui
    Gong, Lei
    Wen, Ting Bin
    He, Xu-Min
    Xia, Haiping
    ORGANOMETALLICS, 2010, 29 (13) : 2904 - 2910
  • [30] Photochemical C-H bond coupling for (hetero)aryl C(sp2)-C(sp3) bond construction
    Zhao, Yating
    Xia, Wujiong
    ORGANIC & BIOMOLECULAR CHEMISTRY, 2019, 17 (20) : 4951 - 4963