Integrating Mixed Halide Perovskite Photocatalytic HI Splitting and Electrocatalysis into a Loop for Efficient and Robust Pure Water Splitting.

Advanced materials (Deerfield Beach, Fla.)(2023)

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摘要
Developing a hydrogen economy to replace traditional fossil fuels is essential for sustainable human development. As two promising H production strategies, photocatalytic and electrocatalytic water splitting with large reaction energy barriers still face the great challenges of poor solar-to-hydrogen efficiency and large electrochemical overpotentials, respectively. Herein, a new strategy is proposed to disassemble the difficult pure water splitting into two parts that are easy to implement, namely mixed halide perovskite photocatalytic HI splitting for H production, and simultaneous electrocatalytic I reduction and O production. The efficient charge separation, abundant H production active sites, and a small HI splitting energy barrier contribute to the superior photocatalytic H production activity of MoSe /MAPbBr I (CH NH  = MA). Subsequent electrocatalytic I reduction and O production reactions only need a small voltage of 0.92 V to drive, which is far lower than that of the electrocatalytic pure water splitting (>1.23 V). The molar ratio of H (6.99 mmol g ) to O (3.09 mmol g ) produced during the first photocatalytic and electrocatalytic cycle is close to 2:1, and the continuous circulation of I /I between the photocatalytic and electrocatalytic systems can achieve efficient and robust pure water splitting.
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关键词
I 3 −/I −,electrocatalysis,mixed halide perovskite,photocatalysis,pure water splitting
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