Dispersion‐Enhanced Nitrogen‐Centered Photocatalysis of the Direct Hydrogen Atom Transfer

J Jiasong Zhang (Wuya College of Innovation Shenyang Pharmaceutical University Shenyang 110016 P.R. China) K Kaitong Zhuang (Wuya College of Innovation Shenyang Pharmaceutical University Shenyang 110016 P.R. China) R Ramon Trevino (Department of Chemistry) B Babu Raj Dhungana (Department of Chemistry) H Huiying Sun S Shuyu Yin (Wuya College of Innovation Shenyang Pharmaceutical University Shenyang 110016 P.R. China) Y Yuting Li (Division of Chemical and Biological Sciences) J Jacob A. Sanchez (Department of Chemistry) X Xiaoyu Xia R Ramy Elerian (Department of Chemistry) Y Yao Sun (Wuya College of Innovation) S Seth O. Fremin (Department of Chemistry) C Chao Huang M Min He M Maosheng Cheng (Key Laboratory of Structure-Based Drug Design and Discovery, Ministry of Education, School of Pharmaceutical Engineering) O Oleg V. Larionov (Department of Chemistry) S Shengfei Jin (Wuya College of Innovation)

Abstract

Abstract The development of structurally distinct and modular photocatalysts for direct hydrogen atom transfer (HAT) has emerged as a key frontier in radical‐mediated C–H functionalization of strong carbon–hydrogen bonds. Despite the largely untapped potential across the fields of organic synthesis, medicinal chemistry, and materials science, few classes of direct HAT photocatalysts are currently known, and the approaches to enhancing their photocatalytic activity remain underdeveloped. We report herein the development of nitrogen‐centered direct HAT photocatalysts based on the acridine framework, which leverage a C9‐ ortho ‐biaryl substituent for enhancing the photocatalytic activity through stabilizing dispersion interactions with the substrate as the key steering effect. The acridine direct HAT photocatalysis enables an array of carbon–carbon and carbon–heteroatom bond‐forming reactions in diverse structural and experimental settings, including cryogenic conditions. It also provides a blueprint for enhancing the photocatalytic activity of direct HAT catalysts by leveraging photocatalyst‐substrate dispersion interactions.

Article Details

Volume / Issue Vol. 65, Issue 6
Published February 02, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (17)

J

Jiasong Zhang

Wuya College of Innovation Shenyang Pharmaceutical University Shenyang 110016 P.R. China

K

Kaitong Zhuang

Wuya College of Innovation Shenyang Pharmaceutical University Shenyang 110016 P.R. China

R

Ramon Trevino

Department of Chemistry

B

Babu Raj Dhungana

Department of Chemistry

H

Huiying Sun

S

Shuyu Yin

Wuya College of Innovation Shenyang Pharmaceutical University Shenyang 110016 P.R. China

Y

Yuting Li

Division of Chemical and Biological Sciences

J

Jacob A. Sanchez

Department of Chemistry

X

Xiaoyu Xia

R

Ramy Elerian

Department of Chemistry

Y

Yao Sun

Wuya College of Innovation

S

Seth O. Fremin

Department of Chemistry

C

Chao Huang

M

Min He

M

Maosheng Cheng

Key Laboratory of Structure-Based Drug Design and Discovery, Ministry of Education, School of Pharmaceutical Engineering

O

Oleg V. Larionov

Department of Chemistry

S

Shengfei Jin

Wuya College of Innovation