Tuning Local Charge Distribution in Multicomponent Covalent Organic Frameworks for Dramatically Enhanced Photocatalytic Uranium Extraction

Author:

Yang Hui1,Hao Mengjie1,Xie Yinghui1,Liu Xiaolu1,Liu Yanfang1,Chen Zhongshan1,Wang Xiangke1,Waterhouse Geoffrey I. N.2,Ma Shengqian3ORCID

Affiliation:

1. College of Environmental Science and Engineering North China Electric Power University Beijing 102206 P.R. China

2. School of Chemical Sciences The University of Auckland Auckland 1142 New Zealand

3. Department of Chemistry University of North Texas Denton TX-76201 USA

Abstract

AbstractOptimizing the electronic structure of covalent organic framework (COF) photocatalysts is essential for maximizing photocatalytic activity. Herein, we report an isoreticular family of multivariate COFs containing chromenoquinoline rings in the COF structure and electron‐donating or withdrawing groups in the pores. Intramolecular donor‐acceptor (D‐A) interactions in the COFs allowed tuning of local charge distributions and charge carrier separation under visible light irradiation, resulting in enhanced photocatalytic performance. By optimizing the optoelectronic properties of the COFs, a photocatalytic uranium extraction efficiency of 8.02 mg/g/day was achieved using a nitro‐functionalized multicomponent COF in natural seawater, exceeding the performance of all COFs reported to date. Results demonstrate an effective design strategy towards high‐activity COF photocatalysts with intramolecular D‐A structures not easily accessible using traditional synthetic approaches.

Funder

Welch Foundation

National Natural Science Foundation of China

Key Technologies Research and Development Program

Royal Society Te Apārangi

Publisher

Wiley

Subject

General Chemistry,Catalysis

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