光电流
覆盖层
介电谱
分解水
异质结
阳极
化学
光电化学
光电化学电池
电极
扫描电子显微镜
材料科学
化学工程
光电子学
电化学
光催化
催化作用
复合材料
生物化学
物理化学
工程类
电解质
作者
Eun Sun Kim,Naoyuki Nishimura,Ganesan Magesh,Jae Young Kim,Ji‐Wook Jang,Hwichan Jun,Jun Kubota,Kazunari Domen,Jae Sung Lee
摘要
Tantalum oxynitride photoanode is fabricated and modified with calcium ferrite to form a heterojunction anode for a photoelectrochemical water splitting cell. The synthesized powders are loaded sequentially to the transparent conducting glass by electrophoretic deposition, which is advantageous to form a uniform layer and a junction structure. X-ray diffraction, UV–vis diffuse reflectance spectroscopy, scanning electron microscopy, and impedance spectroscopy analysis are conducted to investigate the structural, morphological, and electrochemical characteristics of the anode. The introduction of CaFe2O4 overlayer onto TaON electrode increases the photocurrent density about five times at 1.23 V vs reversible hydrogen electrode without any co-catalyst. Impedance spectroscopy analysis indicates that the junction formation increased photocurrent density by reducing the resistance to the transport of charge carriers and thereby enhancing the electron–hole separation. This photocurrent generation is a result of the overall water splitting as confirmed by evolution of hydrogen and oxygen in a stoichiometric ratio. From the study of different junction configurations, it is established that the intimate contact between TaON and CaFe2O4 is critical for enhanced performance of the heterojunction anode for photoelectrochemical water oxidation under simulated sun light.
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