Mesocrystals for photocatalysis: a comprehensive review on synthesis engineering and functional modifications

用于光催化的介晶:合成工程和功能修饰的综合综述

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Abstract

Mesocrystals are a new class of superstructures that are generally made of crystallographically highly ordered nanoparticles and could function as intermediates in a non-classical particle-mediated aggregation process. In the past decades, extensive research interest has been focused on the structural and morphogenetic aspects, as well as the growth mechanisms, of mesocrystals. Unique physicochemical properties including high surface area and ordered porosity provide new opportunities for potential applications. In particular, the oriented interfaces in mesocrystals are considered to be beneficial for effective photogenerated charge transfer, which is a promising photocatalytic candidate for promoting charge carrier separation. Only recently, remarkable advances have been reported with a special focus on TiO(2) mesocrystal photocatalysts. However, there is still no comprehensive overview on various mesocrystal photocatalysts and their functional modifications. In this review, different kinds of mesocrystal photocatalysts, such as TiO(2) (anatase), TiO(2) (rutile), ZnO, CuO, Ta(2)O(5), BiVO(4), BaZrO(3), SrTiO(3), NaTaO(3), Nb(3)O(7)(OH), In(2)O(3-x) (OH) (y) , and AgIn(WO(4))(2), are highlighted based on the synthesis engineering, functional modifications (including hybridization and doping), and typical structure-related photocatalytic mechanisms. Several current challenges and crucial issues of mesocrystal-based photocatalysts that need to be addressed in future studies are also given.

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