Regio‐ and Enantioconvergent Hydroallylation of Acrylates Enabled by γ‐Silyl‐Substituted Allyl Acetates

H Hirotsugu Suzuki (Tenure‐Track Program for Innovative Research University of Fukui 3‐9‐1 Bunkyo, Fukui‐shi Fukui 910‐8507 Japan) R Ryoichi Nishikawa (Department of Applied Chemistry Tokyo University of Science 1–3 Kagurazaka Shinjuku‐ku Tokyo 162‐8601 Japan) Y Yuki Sato K Kaisei Sekino (Department of Applied Chemistry Tokyo University of Science 1–3 Kagurazaka Shinjuku‐ku Tokyo 162‐8601 Japan) T Takanori Matsuda (Department of Applied Chemistry Tokyo University of Science 1–3 Kagurazaka Shinjuku‐ku Tokyo 162‐8601 Japan)

Abstract

Abstract Transition‐metal‐catalyzed asymmetric allylic substitution provides an efficient route to chiral organic molecules featuring an allyl moiety, key intermediates in the synthesis of biologically active compounds. However, the use of unsymmetrical 1,3‐disubstituted allyl electrophiles has been severely constrained by the challenges of achieving both regio‐ and stereoselectivity simultaneously. Herein, we present γ‐silyl‐substituted allyl acetates as highly effective electrophiles for a regio‐ and enantioconvergent hydroallylation, enabling the construction of vicinal stereogenic centers. This method delivers allylated products in 44%–93% yield with 79:21 to >95:5 dr and 88% to >99% ee. Additionally, the silyl group in the products can be readily converted into other functional groups, such as acyl and aryl groups, enhancing their synthetic utility.

Article Details

Volume / Issue Vol. 64, Issue 19
Published May 01, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (5)

H

Hirotsugu Suzuki

Tenure‐Track Program for Innovative Research University of Fukui 3‐9‐1 Bunkyo, Fukui‐shi Fukui 910‐8507 Japan

R

Ryoichi Nishikawa

Department of Applied Chemistry Tokyo University of Science 1–3 Kagurazaka Shinjuku‐ku Tokyo 162‐8601 Japan

Y

Yuki Sato

K

Kaisei Sekino

Department of Applied Chemistry Tokyo University of Science 1–3 Kagurazaka Shinjuku‐ku Tokyo 162‐8601 Japan

T

Takanori Matsuda

Department of Applied Chemistry Tokyo University of Science 1–3 Kagurazaka Shinjuku‐ku Tokyo 162‐8601 Japan