Enantioselective Synthesis of Inherently Chiral Calix[4]arenes via Catalytic Asymmetric Lower‐Rim Functionalization

L Lei Peng Y Yu Chang (State Key Laboratory of Structural Chemistry, Fujian Provincial Key Laboratory of Materials and Techniques toward Hydrogen Energy, Fujian Institute of Research on the Structure of Matter) S Shujun Tong (Chongqing Key Laboratory of Natural Product Synthesis and Drug Research Chemical Biology Research Center School of Pharmaceutical Sciences Chongqing University Chongqing 401331 P.R. China) W Wenling Qin (Chongqing Key Laboratory of Natural Product Synthesis and Drug Research, School of Pharmaceutical Sciences) G Gianpiero Cera (Department of Chemistry Life Sciences and Environmental Sustainability Universita' degli Studi di Parma Parco Area delle Scienze 17/a Parma 43124 Italy) H Hailong Yan (Chongqing Key Laboratory of Natural Product Synthesis and Drug Research, School of Pharmaceutical Sciences)

Abstract

Abstract We report herein an efficient approach for the enantioselective synthesis of inherently chiral calix[4]arenes (ICCs) via chiral phosphoric acid (CPA)‐catalyzed lower‐rim asymmetric functionalization. With vinylidene ortho ‐quinone methides (VQMs) as the key intermediates, a stepwise asymmetric halo‐cyclization strategy was applied to construct diverse inherently chiral calix[4]arenes bearing multiple C─C axially stereogenic elements with high enantio‐ and diastereoselectivities (up to 96% ee, all d.r. > 20:1). The obtained lower‐rim functionalized products underwent further photocatalytic transformations to access novel inherently chiral naphthofuran‐based calix[4]arene architectures. Further synthetic modifications and analysis of their photophysical/chiroptical properties demonstrated their potential in optoelectronic materials and related fields. Mechanistic studies reveal that the reaction proceeds via a stepwise process, with the stereoselectivity‐determining step occurring in the first VQMs‐mediated cyclization, and the second step constituting a chiral transfer process.

Article Details

Volume / Issue Vol. 64, Issue 50
Published December 08, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

L

Lei Peng

Y

Yu Chang

State Key Laboratory of Structural Chemistry, Fujian Provincial Key Laboratory of Materials and Techniques toward Hydrogen Energy, Fujian Institute of Research on the Structure of Matter

S

Shujun Tong

Chongqing Key Laboratory of Natural Product Synthesis and Drug Research Chemical Biology Research Center School of Pharmaceutical Sciences Chongqing University Chongqing 401331 P.R. China

W

Wenling Qin

Chongqing Key Laboratory of Natural Product Synthesis and Drug Research, School of Pharmaceutical Sciences

G

Gianpiero Cera

Department of Chemistry Life Sciences and Environmental Sustainability Universita' degli Studi di Parma Parco Area delle Scienze 17/a Parma 43124 Italy

H

Hailong Yan

Chongqing Key Laboratory of Natural Product Synthesis and Drug Research, School of Pharmaceutical Sciences