A general interfacial-energetics-tuning strategy for enhanced artificial photosynthesis

Author:

Liu Tian,Pan ZhenhuaORCID,Kato Kosaku,Vequizo Junie Jhon M.ORCID,Yanagi Rito,Zheng Xiaoshan,Yu WeilaiORCID,Yamakata Akira,Chen BaoliangORCID,Hu ShuORCID,Katayama Kenji,Chu ChihengORCID

Abstract

AbstractThe demands for cost-effective solar fuels have triggered extensive research in artificial photosynthesis, yet the efforts in designing high-performance particulate photocatalysts are largely impeded by inefficient charge separation. Because charge separation in a particulate photocatalyst is driven by asymmetric interfacial energetics between its reduction and oxidation sites, enhancing this process demands nanoscale tuning of interfacial energetics on the prerequisite of not impairing the kinetics and selectivity for surface reactions. In this study, we realize this target with a general strategy involving the application of a core/shell type cocatalyst that is demonstrated on various photocatalytic systems. The promising H2O2 generation efficiency validate our perspective on tuning interfacial energetics for enhanced charge separation and photosynthesis performance. Particularly, this strategy is highlighted on a BiVO4 system for overall H2O2 photosynthesis with a solar-to-H2O2 conversion of 0.73%.

Funder

National Natural Science Foundation of China

MEXT | Japan Society for the Promotion of Science

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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