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High-Field Growth of Semiconducting Anodic Oxide Films on Metal Surfaces for Photocatalytic Application

机译:用于光催化应用的金属表面上半导体阳极氧化膜的高场生长

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摘要

This work summarizes progresses achieved in the physical chemistry aspects of the growth of anodic oxides under high-field conditions for the synthesis of semiconducting thin solid films and their implementation as photocatalytic materials. We discuss the scope and mechanisms for anodic oxide growth, describing the development of kinetic models and the correlations between theory and kinetic data, leading to fundamental information to characterize the primary processes occurring during the anodization of valve metals under high fields. The main features related to the widely used self-assembly of nanostructures by valve metal anodization are highlighted and briefly discussed. This is followed by general considerations of heterogeneous photocatalysis on these functional materials, considering the kinetics of the heterogeneous catalytic processes involved and the overall photoelectrochemical performance. High control of the characteristics of the materials obtained with the method described, combined with the possibility of electrochemically assisting photocatalysis, allows application of this technology to the treatment of wastewaters, energy conversion, and related fields.
机译:这项工作总结了在高现场条件下阳极氧化物生长的物理化学方面所取得的进展,用于合成半导体薄的固体膜及其作为光催化材料的实施。我们讨论了阳极氧化物生长的范围和机制,描述了动力学模型的发展和理论和动力学数据之间的相关性,导致基本信息,以表征在高领域的阀金属阳极氧化过程中发生的主要过程。突出显示和简要讨论与阀门金属阳极氧化纳米结构纳米结构的广泛使用自组装相关的主要特征。其次是考虑到这些功能材料的异质光催化的一般考虑,考虑到所涉及的异质催化过程和整体光电化学性能的动力学。用所述方法所获得的材料的高控制能够与电化学辅助光催化的可能性相结合,允许将该技术应用于处理废水,能量转换和相关领域。

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