Fine‐Tuning Substrate–Catalyst Halogen–Halogen Interactions for Boosting Enantioselectivity in Halogen‐Bonding Catalysis

Author:

Keuper Alica C.1,Fengler Kevin1,Ostler Florian1,Danelzik Tobias1,Piekarski Dariusz G.2,García Mancheño Olga1ORCID

Affiliation:

1. Organic Chemistry Institute University of Münster Correnstraße 36/40 48149 Münster Germany

2. Institute of Physical Chemistry Polish Academy of Sciences 01-224 Warsaw Poland

Abstract

AbstractA new approach towards highly enantioselective halogen‐bonding catalysis has been developed. To circumvent the intrinsic issues of the nature of the halogen‐bond (XB) and the resultant unresolved limitations in asymmetric catalysis, fine‐tuned halogen–halogen interactions between the substrate and XB‐donor were designed to preorganize the substrate in the catalyst's cavity and boost enantiocontrol. The present strategy exploits both the electron cloud (Lewis base site) and the sigma (σ)‐hole site of the halogen substituent of the substrates to form a tight catalyst–substrate–counteranion chiral complex, thus enabling a controlled induction of high levels of chirality transfer. Remarkable enantioselectivities of up to 95 : 5 e.r. (90 % ee) have been achieved in a model dearomatization reaction of halogen‐substituted (iso)quinolines with tetrakis‐iodotriazole multidentate anion‐binding catalysts.

Funder

H2020 European Research Council

Deutsche Forschungsgemeinschaft

H2020 Marie Skłodowska-Curie Actions

Publisher

Wiley

Subject

General Chemistry,Catalysis

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