Facet-Engineered Surface and Interface Design of Photocatalytic Materials.

Facet-Engineered Surface and Interface Design of Photocatalytic Materials.
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光催化材料的面工程表面和界面设计

DOI:
10.1002/advs.201600216
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发表时间:
2017-01
期刊:
Advanced science (Weinheim, Baden-Wurttemberg, Germany)
影响因子:
--
通讯作者:
Xiong Y
Xiong Y
中科院分区:
其他
文献类型:
--
作者:
Bai S;Wang L;Li Z;Xiong Y

文献摘要

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光催化材料的小面工程表面和界面设计已被证明是提高其光催化性能的一种通用方法。本文综述了用于控制单组分半导体系统表面和设计面向光催化应用的多组分异质结构的表面和界面结构的面工程的一些最新进展。本文首先介绍了光催化材料方面工程中应注意的几个关键问题。然后,我们讨论了实现与表面和界面设计相关的刻面控制的综合方法。在接下来的部分中,介绍了单组分光催化材料的小平面工程表面设计,这为更复杂的体系的讨论奠定了基础。随后,我们阐述了多组份光催化材料的小面工程表面和界面设计。最后,讨论了存在的挑战和未来的展望。
The facet‐engineered surface and interface design for photocatalytic materials has been proven as a versatile approach to enhance their photocatalytic performance. This review article encompasses some recent advances in the facet engineering that has been performed to control the surface of mono‐component semiconductor systems and to design the surface and interface structures of multi‐component heterostructures toward photocatalytic applications. The review begins with some key points which should receive attention in the facet engineering on photocatalytic materials. We then discuss the synthetic approaches to achieve the facet control associated with the surface and interface design. In the following section, the facet‐engineered surface design on mono‐component photocatalytic materials is introduced, which forms a basis for the discussion on more complex systems. Subsequently, we elucidate the facet‐engineered surface and interface design of multi‐component photocatalytic materials. Finally, the existing challenges and future prospects are discussed.