首页> 外文期刊>Journal of photochemistry and photobiology, C. Photochemistry reviews >Polyoxometalate-based molecularano composites: Advances in environmental remediation by photocatalysis and biomimetic approaches to solar energy conversion
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Polyoxometalate-based molecularano composites: Advances in environmental remediation by photocatalysis and biomimetic approaches to solar energy conversion

机译:基于多金属氧酸盐的分子/纳米复合材料:通过光催化和仿生方法进行太阳能转化的环境修复研究进展

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摘要

Polyoxometalates (POMs) have peculiar optoelectronic properties and high reduction potential, playing as excellent electron pools. Thus, during the recent decade, POMs have been increasingly recognized as important building blocks for highly efficient photocatalysts and photoelectrochemical devices by hybridizing with photofunctional semiconductor nanostructures and organic/inorganic molecules. In this review, development of various molecular and nano composites derived from POMs are discussed with regard to photocatalytic environmental remediation, hydrogen production, carbon dioxide reduction and photoelectrochemical solar cells. The mechanisms involved in photo-induced interfacial electron transfer processes and subsequent photochemical reactions are explored along with a brief description about their advances in emerging solar application areas. More fundamental information of the photocatalytic activities of the POM-based composites would be very useful in constructing next generation artificial photosynthetic systems with higher spectral response in visible region for efficient solar energy conversion into electricity and fuels.
机译:多金属氧酸盐(POM)具有独特的光电性能和高还原电位,可作为出色的电子库。因此,在最近的十年中,通过与光功能半导体纳米结构和有机/无机分子的杂交,POM被越来越多地视为高效光催化剂和光电化学装置的重要组成部分。在这篇综述中,讨论了有关光催化环境修复,氢气生产,二氧化碳还原和光电化学太阳能电池的各种由POM衍生的分子和纳米复合材料的开发。探索了光诱导界面电子转移过程和随后的光化学反应所涉及的机制,并简要介绍了它们在新兴太阳能应用领域中的进展。基于POM的复合材料的光催化活性的更多基本信息对于构建下一代在可见光区域具有更高光谱响应的人造光合作用系统非常有用,可以有效地将太阳能转化为电能和燃料。

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