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钼、钼氧化物及其电化学。

Molybdenum, molybdenum oxides, and their electrochemistry.

机构信息

Department of Advanced Materials Chemistry, Korea University, Jochiwon, Sejong 339-700, Korea.

出版信息

ChemSusChem. 2012 Jul;5(7):1146-61. doi: 10.1002/cssc.201100660. Epub 2012 Jun 12.

Abstract

The electrochemical behaviors of molybdenum and its oxides, both in bulk and thin film dimensions, are critical because of their widespread applications in steels, electrocatalysts, electrochromic materials, batteries, sensors, and solar cells. An important area of current interest is electrodeposited CIGS-based solar cells where a molybdenum/glass electrode forms the back contact. Surprisingly, the basic electrochemistry of molybdenum and its oxides has not been reviewed with due attention. In this Review, we assess the scattered information. The potential and pH dependent active, passive, and transpassive behaviors of molybdenum in aqueous media are explained. The major surface oxide species observed, reversible redox transitions of the surface oxides, pseudocapacitance and catalytic reduction are discussed along with carefully conducted experimental results on a typical molybdenum glass back contact employed in CIGS-based solar cells. The applications of molybdenum oxides and the electrodeposition of molybdenum are briefly reviewed.

摘要

钼及其氧化物的电化学行为无论是在块状还是薄膜尺寸方面都至关重要,因为它们在钢铁、电催化剂、电致变色材料、电池、传感器和太阳能电池中有着广泛的应用。当前一个重要的研究领域是电沉积 CIGS 基太阳能电池,其中钼/玻璃电极形成背接触。令人惊讶的是,钼及其氧化物的基本电化学尚未得到充分关注。在这篇综述中,我们评估了分散的信息。解释了钼在水介质中随电势和 pH 值变化的活性、钝化和过钝化行为。讨论了主要的表面氧化物物种、表面氧化物的可逆氧化还原跃迁、赝电容和催化还原,以及在 CIGS 基太阳能电池中使用的典型钼玻璃背接触的精心进行的实验结果。简要回顾了钼氧化物的应用和钼的电沉积。

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