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Microenvironment Modulation of <scp>Imine‐Based</scp> Covalent Organic Frameworks for <scp>CO<sub>2</sub></scp> Photoreduction

Man Dong, Wei Li, Jie Zhou, Siqi You, Chunyi Sun, Xiaohui Yao, Chao Qin, Xinlong Wang, Zhong‐Min Su

2022Chinese Journal of Chemistry32 citationsDOI

Abstract

Comprehensive Summary Photocatalytic CO 2 reduction to fuels and chemicals has been considered as the promising avenue to realize carbon resource recycling. Covalent organic frameworks (COFs) with pre‐designed and tailorable structures are promising platforms for studying the influence of the microenvironment of catalysts on photocatalytic CO 2 reduction. Herein, we report three isomorphic COFs (TPHH‐COF, TPPD‐COF and TPBD‐COF) as heterogeneous photocatalysts for CO 2 reduction and investigate the different levels of conjugation and planarity of COFs effect on the catalytic activity. Photoelectrochemical measurements show that TPPD‐COF has a narrower band gap and faster photocurrent response compared to TPHH‐COF and TPBD‐COF, probably due to the moderate conjugation and planarity. As the photocatalyst, TPPD‐COF showed the most outstanding photocatalytic activity with the production rates of 951 and 157 μmol·g –1 ·h –1 for CO and H 2 , respectively. This study illustrates the close relation between microenvironment and photocatalytic activity and provides new insights for designing high‐performance photocatalysts.

Topics & Concepts

ChemistryPhotocatalysisPhotocurrentCovalent organic frameworkImineCovalent bondCatalysisPlanarity testingChemical engineeringNanotechnologyOrganic chemistryOptoelectronicsMaterials scienceEngineeringCrystallographyCovalent Organic Framework ApplicationsCO2 Reduction Techniques and CatalystsAdvanced Photocatalysis Techniques