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A Review on the Fabrication of Hierarchical ZnO Nanostructures for Photocatalysis Application

机译:多层ZnO纳米结构在光催化中的应用研究进展

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Semiconductor photocatalysis provides potential solutions for many energy and environmental-related issues. Recently, various semiconductors with hierarchical nanostructures have been fabricated to achieve efficient photocatalysts owing to their multiple advantages, such as high surface area, porous structures, as well as enhanced light harvesting. ZnO has been widely investigated and considered as the most promising alternative photocatalyst to TiO 2 . Herein, we present a review on the fabrication methods, growth mechanisms and photocatalytic applications of hierarchical ZnO nanostructures. Various synthetic strategies and growth mechanisms, including multistep sequential growth routes, template-based synthesis, template-free self-organization and precursor or self-templating strategies, are highlighted. In addition, the fabrication of multicomponent ZnO-based nanocomposites with hierarchical structures is also included. Finally, the application of hierarchical ZnO nanostructures and nanocomposites in typical photocatalytic reactions, such as pollutant degradation and H 2 evolution, is reviewed.
机译:半导体光催化为许多与能源和环境有关的问题提供了潜在的解决方案。近来,由于具有多种优点,例如高表面积,多孔结构以及增强的光收集,已经制造了具有分级纳米结构的各种半导体以实现有效的光催化剂。 ZnO已被广泛研究,并被认为是TiO 2最有希望的替代光催化剂。本文中,我们对分级ZnO纳米结构的制备方法,生长机理和光催化应用进行了综述。重点介绍了各种合成策略和增长机制,包括多步顺序增长途径,基于模板的合成,无模板的自组织和前体或自我模板化策略。另外,还包括具有分层结构的多组分ZnO基纳米复合材料的制造。最后,综述了分级ZnO纳米结构和纳米复合材料在典型的光催化反应中的应用,例如污染物的降解和H 2的释放。

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