普鲁士蓝
光电流
氧化剂
催化作用
材料科学
化学工程
分解水
氧化物
金属
化学
电极
光电子学
电化学
物理化学
光催化
冶金
工程类
有机化学
生物化学
作者
Benjamin Moss,Franziska Simone Hegner,Sacha Corby,Shababa Selim,Laia Francàs,Núria López,Sixto Giménez,José Ramón Galán‐Mascarós,James R. Durrant
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2018-12-26
卷期号:4 (1): 337-342
被引量:83
标识
DOI:10.1021/acsenergylett.8b02225
摘要
Catalyst modification of metal oxide photoanodes can result in markedly improved water oxidation efficiency. However, the reasons for improvement are often subtle and controversial. Upon depositing a CoFe Prussian blue (CoFe-PB) water oxidation catalyst on BiVO4, a large photocurrent increase and onset potential shift (up to 0.8 V) are observed, resulting in a substantially more efficient system with high stability. To elucidate the origin of this enhancement, we used time-resolved spectroscopies to compare the dynamics of photogenerated holes in modified and unmodified BiVO4 films. Even in the absence of strong positive bias, a fast (pre-ms), largely irreversible hole transfer from BiVO4 to CoFe-PB is observed. This process retards recombination, enabling holes to accumulate in the catalyst. Holes in CoFe-PB remain reactive, oxidizing water at a similar rate to holes in pristine BiVO4. CoFe-PB therefore enhances performance by presenting a favorable interface for efficient hole transfer, combined with the catalytic function necessary to drive water oxidation.
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