Fully Conjugated Sp <sup>2</sup> Carbon‐Linked Covalent Organic Frameworks Enables Accelerated Exciton Process for Superior Singlet Oxygen Photosynthesis for Water Remediation

S Siyuan Guo (Guangdong Basic Research Center of Excellence for Ecological Security and Green Development Guangdong Provincial Key Laboratory of Water Quality Improvement and Ecological Restoration for Watersheds School of Ecology, Environment and Resources Guangdong University of Technology Guangzhou 510006 P.R. China) K Kun Zhao L Luwen Liang Z Zifan Li B Bin Han X Xinwen Ou (Department of Chemistry, the Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, Department of Chemical and Biological Engineering, State Key Laboratory of Nervous System Disorders, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR 999077, China) S Shan Yao Z Zhiqing Lin (Guangdong Basic Research Center of Excellence for Ecological Security and Green Development, Guangdong Provincial Key Laboratory of Water Quality Improvement and Ecological Restoration for Watersheds, School of Ecology, Environment and Resources) Z Zhimin Dong (State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 P.R. China) Y Yunhai Liu L Liqun Ye B Bo Weng (CAS Key Laboratory of Urban Pollutant Conversion Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 P.R. China) Y Yanpeng Cai Z Zhifeng Yang (School of Ecology, Environment and Resources, Guangdong University of Technology)

Abstract

Abstract Photocatalytic oxygen (O 2 ) activation via energy transfer offers a sustainable approach for singlet oxygen ( 1 O 2 ) synthesis, while its performance suffers from the ultrafast exciton dissociation and sluggish intersystem crossing (ISC) process. Up to date, exciton regulation is still in its infancy. Here, via linkage engineering of covalent organic frameworks (COFs), we propose a fully conjugated sp 2 carbon‐linked COFs (sp 2 c‐Py‐Bpy COFs) with strong exciton interaction and fast ISC for boosted 1 O 2 photosynthesis. The sp 2 c‐Py‐Bpy COFs delivers a record‐high 1 O 2 yield (624 µM min −1 ) with 100% selectivity, which is ca. eight times that of the traditional imine‐bridged COFs (Im‐Py‐Bpy COFs, ca. 95.8% selectivity), outperforming documented systems. Transient absorption spectroscopy and theoretical investigations demonstrate that the fully conjugated sp 2 carbon linkage of sp 2 c‐Py‐Bpy COFs can enhance Coulomb interaction, promote ISC and push forward the transfer of triplet exciton to the O 2 adsorption sites throughout the COFs matrix, jointly facilitating the energy transfer process for efficient 1 O 2 photosynthesis and bypassing the traditional electron transfer process. Hence, sp 2 c‐Py‐Bpy COFs can selectively degrade acetaminophen within minutes under visible light irradiation and enables stable degradation of emerging pollutants in a continuous flow membrane reactor (20 × 30 × 2 cm) utilizing natural sunlight and dissolved O 2 .

Article Details

Volume / Issue Vol. 64, Issue 31
Published July 28, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (14)

S

Siyuan Guo

Guangdong Basic Research Center of Excellence for Ecological Security and Green Development Guangdong Provincial Key Laboratory of Water Quality Improvement and Ecological Restoration for Watersheds School of Ecology, Environment and Resources Guangdong University of Technology Guangzhou 510006 P.R. China

K

Kun Zhao

L

Luwen Liang

Z

Zifan Li

B

Bin Han

X

Xinwen Ou

Department of Chemistry, the Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, Department of Chemical and Biological Engineering, State Key Laboratory of Nervous System Disorders, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR 999077, China

S

Shan Yao

Z

Zhiqing Lin

Guangdong Basic Research Center of Excellence for Ecological Security and Green Development, Guangdong Provincial Key Laboratory of Water Quality Improvement and Ecological Restoration for Watersheds, School of Ecology, Environment and Resources

Z

Zhimin Dong

State Key Laboratory of Nuclear Resources and Environment East China University of Technology Nanchang 330013 P.R. China

Y

Yunhai Liu

L

Liqun Ye

B

Bo Weng

CAS Key Laboratory of Urban Pollutant Conversion Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 P.R. China

Y

Yanpeng Cai

Z

Zhifeng Yang

School of Ecology, Environment and Resources, Guangdong University of Technology