Electrochemical Asymmetric Diacetoxylation of Styrenes Mediated by Chiral Iodoarene Catalyst

被引:4
|
作者
Wojciechowska, Natalia [1 ]
Bienkowski, Krzysztof [1 ]
Solarska, Renata [1 ]
Kalek, Marcin [1 ]
机构
[1] Univ Warsaw, Ctr New Technol, Banacha 2C, PL-02097 Warsaw, Poland
关键词
asymmetric catalysis; electrosynthesis; iodoarene; oxidation; styrenes; ELECTROLYTIC PARTIAL FLUORINATION; HYPERVALENT IODINE REAGENTS; ORGANIC-COMPOUNDS; ANODIC-OXIDATION; ELECTROSYNTHESIS; ALKENES; FUNCTIONALIZATION; DERIVATIVES; DIFLUORIDE;
D O I
10.1002/ejoc.202300477
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
Organocatalysis with chiral iodoarenes has emerged as a powerful approach for performing enantioselective transformations. However, it suffers from the need to utilize stoichiometric amounts of peroxy acids or similar high energy oxidants. Electrosynthesis enables eliminating stoichiometric redox reagents by replacing them with electric stimuli. In this context, an electrochemically-promoted variant of the chiral iodoarene-catalyzed asymmetric diacetoxylation of styrenes was evaluated. The screening of reaction parameters established a set of conditions under which, for the first time, an enantioselective electrochemical oxidation mediated by a chiral iodoarene achieving a catalytic turnover has been accomplished. The reaction was applied for the synthesis of an array of products in 15-60 % yields and 0-84 % ee. The modest efficiency of the electrocatalysis was traced to a partial direct oxidation of styrene substrates leading to racemic products and undesired dimeric side-products. Cyclic voltammetry measurements demonstrated that such outcome originates from a somewhat difficult electrochemical oxidation of the applied iodoarene catalyst. Present work provides important insights and implications for the design of more efficient electrocatalytic systems employing chiral iodoarenes as mediators.
引用
收藏
页数:5
相关论文
共 50 条
  • [1] Effective asymmetric epoxidation of Styrenes by chiral dioxirane
    Goeddel, D
    Shu, LH
    Yuan, Y
    Wong, A
    Wang, B
    Shi, Y
    JOURNAL OF ORGANIC CHEMISTRY, 2006, 71 (04): : 1715 - 1717
  • [2] Asymmetric hydrosilylation of styrenes by use of new chiral phosphoramidites
    Li, Xinsheng
    Song, Jianan
    Xu, Dongcheng
    Kong, Lichun
    SYNTHESIS-STUTTGART, 2008, (06): : 925 - 931
  • [3] Asymmetric hydrosilylation of styrenes by use of new chiral phosphoramidites
    Zhejiang Key Laboratory for Reactive Chemistry on Solid Surfaces, Institute of Physical Chemistry, Zhejiang Normal University, Jinhua 321004, China
    Synthesis, 2008, 6 (925-931)
  • [4] Asymmetric Hydrosilylation of β-Silyl Styrenes Catalyzed by a Chiral Palladium Complex
    Wang, Yi-Fan
    He, Yu-Han
    Su, Yan
    Ji, Yang
    Li, Rui
    JOURNAL OF ORGANIC CHEMISTRY, 2022, 87 (05): : 2831 - 2844
  • [5] Asymmetric sulfoxidation of thioethers with hydrogen peroxide in water mediated by platinum chiral catalyst
    Scarso, A
    Strukul, G
    ADVANCED SYNTHESIS & CATALYSIS, 2005, 347 (09) : 1227 - 1234
  • [6] Indium-mediated asymmetric allylation of acylhydrazones using a chiral urea catalyst
    Tan, Kian L.
    Jacobsen, Eric N.
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2007, 46 (08) : 1315 - 1317
  • [7] Chiral C 2-Symmetric Iodoarene-Catalyzed Asymmetric -Oxidation of -Keto Esters
    Feng, Yangyang
    Huang, Ruofeng
    Hu, Liangzhen
    Xiong, Yan
    Coeffard, Vincent
    SYNTHESIS-STUTTGART, 2016, 48 (16): : 2637 - 2644
  • [8] Carbohydrate-Based Chiral Iodoarene Catalysts: A Survey through the Development of an Improved Catalyst Design
    Imrich, Michael R.
    Biehler, Linda E.
    Maichle-Moessmer, Caecilia
    Ziegler, Thomas
    MOLECULES, 2019, 24 (21):
  • [9] CHIRAL OXAZOLIDINE CATALYST FOR ASYMMETRIC SYNTHESIS
    Nakano, Hiroto
    Okuyama, Yuko
    Kwon, Eunsang
    HETEROCYCLES, 2014, 89 (01) : 1 - 26
  • [10] Understanding Rate Acceleration and Stereoinduction of an Asymmetric Giese Reaction Mediated by a Chiral Rhodium Catalyst
    Tutkowski, Brandon
    Meggers, Eric
    Wiest, Olaf
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (24) : 8062 - 8065