A theoretical study of asymmetric ketone hydrogenation catalyzed by Mn complexes: from the catalytic mechanism to the catalyst design

被引:8
作者
Zhao, Yaqi [1 ]
Zhang, Lin [1 ]
Tang, Yanhui [1 ,2 ]
Pu, Min [1 ]
Lei, Ming [1 ]
机构
[1] Beijing Univ Chem Technol, State Key Lab Chem Resource Engn, Inst Computat Chem, Coll Chem, Beijing 100029, Peoples R China
[2] Beijing Inst Fash Technol, Sch Mat Design & Engn, Beijing 100029, Peoples R China
基金
中国国家自然科学基金;
关键词
MANGANESE; ALCOHOLS; IRON; H-2; ALKYLATION; INSIGHTS; AMINES; ACID;
D O I
10.1039/d2cp00818a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Herein, a density functional theory (DFT) study was performed to investigate asymmetric ketone hydrogenation (AKH) catalyzed by Mn compLexes, from the cataLytic mechanism to the catalyst design. The calculated results indicated that the Mn(CO)(2)-PSiNSiP (A1, PSiNSiP = P(Ph)(2)Si(CH3)(2)NSi(CH3)(2)P(Ph)(2)) pincer compLex has potential high cataLytic activity for ketone hydrogenation. The Mn(CO)-LYB (B, LYB = P(Ph)(2)Si(CH3)(2)NSi(CH3)(2)P(Me)(2)) pincer compLex was then designed to catalyze AKH with good stereoseLectivity. The hydrogen transfer (HT) step is the chiraLity-determining step. To avoid the enantiomer of Mn(CO)(2)-LYB, which could eliminate the high stereoseLectivity during AKH, novel Mn compLexes with quadridentate ligands, such as Mn(CO)-LYC (C, LYC = P(CH3)(2)CH2Si(CH3)NSi(CH3)(Si(CH3)CH2P(CH3)(2))CH2P(Ph)(2)) and Mn(C0)-LYD (D, LYD = P(CH3)(2)CH2Si(CH3)NSi(CH3)(Si(CH3)CH2P(CH3)(2))CH2P(Cy)(2)), were designed to drive AKH with medium stereoseLectivity. In order to increase the stereoseLectivity of AKH, Mn(CO)-LYE (E, LYE = PH2CH2Si(CH3)NSi(CH3)(Si(CH3)CH2P(CH3)(2))CH2P(Ph)(2)) and Mn(CO)-LYF (F, LYE = PH2CH2Si(CH3)NSi(CH3)(Si(CH3)CH2P(CH3)(2))CH2P(Cy)(2)) were further designed and showed very good stereoseLectivity, which is due to the Lower deformation energy and stronger interactions between the ketone substrates and cataLysts. This work may shed Light on the design of cheap metal cataLysts with a new Ligand framework for the asymmetric hydrogenation (AH) of C=X bonds (X = O, N).
引用
收藏
页码:13365 / 13375
页数:11
相关论文
共 72 条
  • [21] Origins of enantioselectivity in asymmetric ketone hydrogenation catalyzed by a RuH2(binap)(cydn) complex: insights from a computational study
    Feng, Ran
    Xiao, Ang
    Zhang, Xin
    Tang, Yanhui
    Lei, Ming
    [J]. DALTON TRANSACTIONS, 2013, 42 (06) : 2130 - 2145
  • [22] Catalytic (de)hydrogenation promoted by non-precious metals - Co, Fe and Mn: recent advances in an emerging field
    Filonenko, Georgy A.
    van Putten, Robbert
    Hensen, Emiel J. M.
    Pidko, Evgeny A.
    [J]. CHEMICAL SOCIETY REVIEWS, 2018, 47 (04) : 1459 - 1483
  • [23] Frisch M. J., 2016, Gaussian 16, Revision C. 01
  • [24] THE PATH OF CHEMICAL-REACTIONS - THE IRC APPROACH
    FUKUI, K
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 1981, 14 (12) : 363 - 368
  • [25] Isoelectronic Manganese and Iron Hydrogenation/Dehydrogenation Catalysts: Similarities and Divergences
    Gorgas, Nikolaus
    Kirchner, Karl
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 2018, 51 (06) : 1558 - 1569
  • [26] HAY PJ, 1985, J CHEM PHYS, V82, P299, DOI [10.1063/1.448800, 10.1063/1.448799]
  • [27] VMD: Visual molecular dynamics
    Humphrey, W
    Dalke, A
    Schulten, K
    [J]. JOURNAL OF MOLECULAR GRAPHICS & MODELLING, 1996, 14 (01) : 33 - 38
  • [28] Revealing Noncovalent Interactions
    Johnson, Erin R.
    Keinan, Shahar
    Mori-Sanchez, Paula
    Contreras-Garcia, Julia
    Cohen, Aron J.
    Yang, Weitao
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2010, 132 (18) : 6498 - 6506
  • [29] Manganese-Catalyzed Sustainable Synthesis of Pyrroles from Alcohols and Amino Alcohols
    Kallmeier, Fabian
    Dudziec, Beata
    Irrgang, Torsten
    Kempe, Rhett
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2017, 56 (25) : 7261 - 7265
  • [30] Manganese Doping in Cobalt Oxide Nanorods Promotes Catalytic Dehydrogenation
    Ke, Qingping
    Yi, Ding
    Jin, Yangxin
    Lu, Fei
    Zhou, Bo
    Zhan, Fei
    Yang, Yijun
    Gao, Denglei
    Yan, Pengfei
    Wan, Chao
    Cui, Ping
    Golberg, Dmitri
    Yao, Jiannian
    Wang, Xi
    [J]. ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2020, 8 (14): : 5734 - 5741