光催化
材料科学
接触角
异质结
氧化物
混合氧化物燃料
半导体
带隙
纳米技术
金属
扩散
润湿
分解
光电子学
化学工程
复合材料
化学
催化作用
生物化学
物理
铀
有机化学
工程类
冶金
热力学
作者
R. Deshpande,Jesper Navne,Mathias Vadmand Adelmark,Evgeniy Shkondin,Andrea Crovetto,Ole Hansen,Julien Bachmann,Rafael Taboryski
标识
DOI:10.1038/s41467-023-44603-2
摘要
Abstract Photocatalytic effects resulting in water splitting, reduction of carbon dioxide to fuels using solar energy, decomposition of organic compounds, and light-induced hydrophilicity observed on surfaces of various metal oxides (MOx), all rely on the same basic physical mechanisms, and have attracted considerable interest over the past decades. TiO 2 and ZnO, two natively n-type doped wide bandgap semiconductors exhibit the effects mentioned above. In this study we propose a model for the photo-induced hydrophilicity in MOx films, and we test the model for TiO 2 /Si and ZnO/Si heterojunctions. Experimentally, we employ a wet exposure technique whereby the MOx surface is exposed to UV light while a water droplet is sitting on the surface, which allows for a continuous recording of contact angles during illumination. The proposed model and the experimental techniques allow a determination of minority carrier diffusion lengths by contact angle measurements and suggest design rules for materials exhibiting photocatalytic hydrophilicity. We expect that this methodology can be extended to improve our physical understanding of other photocatalytic surface effects.
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