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Facet‐Controlled Synthetic Strategy of Cu2O‐Based Crystals for Catalysis and Sensing

机译:基于面控制的基于Cu2O的晶体催化和传感合成策略

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摘要

Shape‐dependent catalysis and sensing behaviours are primarily focused on nanocrystals enclosed by low‐index facets, especially the three basic facets ({100}, {111}, and {110}). Several novel strategies have recently exploded by tailoring the original nanocrystals to greatly improve the catalysis and sensing performances. In this Review, we firstly introduce the synthesis of a variety of Cu2O nanocrystals, including the three basic Cu2O nanocrystals (cubes, octahedra and rhombic dodecahedra, enclosed by the {100}, {111}, and {110} facets, respectively), and Cu2O nanocrystals enclosed by high‐index planes. We then discuss in detail the three main facet‐controlled synthetic strategies (deposition, etching and templating) to fabricate Cu2O‐based nanocrystals with heterogeneous, etched, or hollow structures, including a number of important concepts involved in those facet‐controlled routes, such as the selective adsorption of capping agents for protecting special facets, and the impacts of surface energy and active sites on reaction activity trends. Finally, we highlight the facet‐dependent properties of the Cu2O and Cu2O‐based nanocrystals for applications in photocatalysis, gas catalysis, organocatalysis and sensing, as well as the relationship between their structures and properties. We also summarize and comment upon future facet‐related directions.
机译:形状相关的催化和传感行为主要集中在低折射率刻面所包围的纳米晶体上,尤其是三个基本刻面({100},{111}和{110})。通过定制原始的纳米晶体,极大地改善了催化和传感性能,最近出现了几种新颖的策略。在本综述中,我们首先介绍了多种Cu2O纳米晶体的合成,包括三种基本的Cu2O纳米晶体(立方体,八面体和菱形十二面体,分别由{100},{111}和{110}面包围),和被高折射率平面包围的Cu2O纳米晶体。然后,我们将详细讨论三种主要的受面控制的合成策略(沉积,蚀刻和模板化),以制造具有异质,经蚀刻或中空结构的基于Cu2O的纳米晶体,其中包括涉及这些受面控制的路线的许多重要概念,例如作为保护特殊表面的封端剂的选择性吸附,以及表面能和活性位点对反应活性的影响趋势。最后,我们重点介绍了用于光催化,气体催化,有机催化和传感的Cu2O和Cu2O基纳米晶体的刻面相关特性,以及它们的结构与特性之间的关系。我们还将总结和评论未来与方面相关的方向。

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