光催化
制氢
纤锌矿晶体结构
氢
材料科学
光催化分解水
氧气
分解水
析氧
化学工程
锌
光化学
无机化学
化学
电化学
催化作用
冶金
有机化学
工程类
生物化学
电极
物理化学
作者
Yu Shundo,Thanh Tam Nguyen,Saeid Akrami,Parisa Edalati,Yuta Itagoe,Tatsumi Ishihara,Makoto Arita,Qixin Guo,Masayoshi Fuji,Thanh Tam Nguyen
标识
DOI:10.1016/j.jcis.2024.04.010
摘要
The generation of hydrogen as a clean energy carrier by photocatalysis as a zero-emission technology is of significant scientific interest. However, the main drawback of photocatalytic hydrogen generation from water splitting is its low efficiency compared to traditional chemical or electrochemical methods. Zinc oxide (ZnO) with the wurtzite phase is one of the most investigated photocatalysts for hydrogen production, but its activity still needs to be improved. In this study, an oxygen-deficient high-pressure ZnO rocksalt phase is stabilized using a high-pressure method, and the product is used for photocatalysis under ambient pressure. The simultaneous introduction of oxygen vacancy and the rocksalt phase effectively improved photocatalytic hydrogen production to levels comparable to benchmark P25 TiO2, due to improving light absorbance and providing active sites for photocatalysis without any negative effect on electron-hole recombination. These results confirm the high potential of high-pressure phases for photocatalytic hydrogen generation.
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