Catalytic Enantioselective Synthesis Enabled by Electrochemistry

被引:1
|
作者
Phillips, Ana Maria Faisca [1 ]
Pombeiro, Armando J. L. [1 ,2 ]
机构
[1] Univ Lisbon, Inst Mol Sci, Inst Super Tecn, Ctr Quim Estrutural,Coordinat Chem & Catalysis Grp, Av Rovisco Pais 1, P-1049001 Lisbon, Portugal
[2] ?eoples Friendship Univ Russia, RUDN Univ, Res Inst Chem, Moscow, Russia
来源
SYNTHESIS-STUTTGART | 2023年 / 55卷 / 18期
关键词
electrosynthesis; asymmetric synthesis; chirality; anodic oxidation; cathodic reduction; electrolysis; homogeneous catalysis; radicals; ELECTROSYNTHESIS; OXIDATION; FUTURE; FUNCTIONALIZATION;
D O I
10.1055/a-2011-7073
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
Catalytic enantioselective electrochemical synthesis has emerged in recent years as an efficient, clean, sustainable way to obtain chiral, non-racemic molecules. The difficulties in finding reaction conditions that are compatible with the delicate functional groups of many chiral ligands and organocatalysts has hampered the developments in this field. However, the fact that very minute differences in potential can be selected, allows for fine-tuning, so that very high chemoselectivities can be achieved, which is attracting much attention. Although still few in number compared to other areas of knowledge, the existing methods allow a variety of bond-forming reactions to be performed, and very high yields and ees can be achieved. The present review surveys the literature published in the last four years.1 Introduction2 Transition-Metal-Catalyzed Reactions2.1 Alkylation by C-H Bond Functionalization: C(sp3)-C(sp3) Bond Formation2.2 C(sp3)-C(sp2) Bond Formation2.2.1 Alkene Functionalization by Cross-Coupling Reactions2.2.2 Arylation by Cross-Coupling Reactions2.3 Alkynylation: C(sp3)-C(sp) Bond Formation2.4 Cross-Coupling Reactions for the Synthesis of Axially Chiral Biaryls2.5 Cyanofunctionalization2.6 Miscellaneous3 Organocatalysis4 Conclusions
引用
收藏
页码:2926 / 2942
页数:17
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