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A Photoactivated Cu–CeO2 Catalyst with Cu‐[O]‐Ce Active Species Designed through MOF Crystal Engineering
Authors:Feifan Wang  Jie Tian  Mengzhu Li  Weizhen Li  Lifang Chen  Xiaozhi Liu  Jian Li  Aidaer Muhetaer  Qi Li  Yuan Wang  Lin Gu  Ding Ma  Dongsheng Xu
Abstract:Fully utilizing solar energy for catalysis requires the integration of conversion mechanisms and therefore delicate design of catalyst structures and active species. Herein, a MOF crystal engineering method was developed to controllably synthesize a copper–ceria catalyst with well‐dispersed photoactive Cu‐O]‐Ce species. Using the preferential oxidation of CO as a model reaction, the catalyst showed remarkably efficient and stable photoactivated catalysis, which found practical application in feed gas treatment for fuel cell gas supply. The coexistence of photochemistry and thermochemistry effects contributes to the high efficiency. Our results demonstrate a catalyst design approach with atomic or molecular precision and a combinatorial photoactivation strategy for solar energy conversion.
Keywords:energy conversion  heterogeneous catalysis  metal–  organic frameworks  nanoparticles  photocatalysis
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