Heavy‐Atom‐Free Supramolecular Photosensitizers Derived from Conventional Fluorophores

L Lingfeng Fan (Shenzhen Grubbs Institute Southern University of Science and Technology Shenzhen 518055 China) Y Yong Wu C Cong‐Qiao Xu (Department of Chemistry Southern University of Science and Technology Shenzhen China) H Hanqiu Jiang (China Spallation Neutron Source Dongguan 523803 P.R. China) Z Zhenhua Xie (Department of Chemical Engineering) Y Yubin Ke (China Spallation Neutron Source) J Jun Li Q Qiao Song (Institute of Materials Research)

Abstract

Abstract Heavy‐atom‐free photosensitizers (PSs) offer advantages such as efficient generation of reactive oxygen species (ROS), low dark cytotoxicity, good photostability, and high biocompatibility. Although the development of new PSs through organic synthesis has been a focus of active research, supramolecular chemistry offers a complementary pathway. This study presents a versatile supramolecular strategy to convert conventional fluorophores into heavy‐atom‐free PSs using a cyclic peptide‐based scaffold that densely assembles fluorophore moieties. Results demonstrate that supramolecular PSs constructed from four synthetic fluorophore types—cyanines, coumarins, rhodamines, and BODIPYs—exhibit a remarkable enhancement in ROS generation efficiency, attributed to the increased intersystem crossing efficiency induced by self‐assembly. Moreover, these supramolecular PSs function as visible‐light photocatalysts, efficiently regenerating NAD + from NADH. The densely packed polymer shell further shields enzymes from ROS‐induced deactivation, thereby facilitating the development of robust photoenzyme catalytic systems. This study not only enriches the design methodology of heavy‐atom‐free PSs, but also paves the way for eco‐friendly photobiocatalytic systems.

Article Details

Volume / Issue Vol. 64, Issue 29
Published July 14, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

L

Lingfeng Fan

Shenzhen Grubbs Institute Southern University of Science and Technology Shenzhen 518055 China

Y

Yong Wu

C

Cong‐Qiao Xu

Department of Chemistry Southern University of Science and Technology Shenzhen China

H

Hanqiu Jiang

China Spallation Neutron Source Dongguan 523803 P.R. China

Z

Zhenhua Xie

Department of Chemical Engineering

Y

Yubin Ke

China Spallation Neutron Source

J

Jun Li

Q

Qiao Song

Institute of Materials Research