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首页> 外文期刊>Inorganic Chemistry Frontiers >Tungsten oxide-based visible light-driven photocatalysts: crystal and electronic structures and strategies for photocatalytic efficiency enhancement
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Tungsten oxide-based visible light-driven photocatalysts: crystal and electronic structures and strategies for photocatalytic efficiency enhancement

机译:基于氧化氧化物的可见光触发光催化剂:光催化效率增强的晶体和电子结构和策略

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摘要

Photocatalysis (PC) technology has received global attention due to its high potential of addressing both environmental and energy issues using only solar light as energy input. However, large-scale commercialization of PC technology is still far from expectation, which is primarily limited by low efficiency. The development of PC technology depends crucially on photocatalyst materials. In the past half century, TiO2 has been mostly investigated and developed as a benchmark photocatalyst. However, TiO2 responds intrinsically only to UV light, which has limited its efficient utilization of solar energy and restrained its applications to where UV light is not available, e.g., indoor air purification. The development of novel intrinsically visible light-driven photocatalysts has been a new trend of PC technology. Amongst the various visible-light responsive candidates, tungsten oxides (WOX, X <= 3) have attracted much attention due to their diversely tunable stoichiometries and structures, suitable band gaps, chemical stability and Earth-abundance. However, bare WOX exhibits comparatively low efficiency because of the fast recombination rate of photogenerated electrons and holes. Various strategies have been developed to enhance the photocatalytic efficiency of WOX, including the controls in the crystal phase, stoichiometry/oxygen-vacancy, active facet and morphology, elemental doping, loading of noble metal nanoparticles, hybridization with carbon materials and coupling with other semiconductors to construct heterojunctions. This review summarizes firstly the fundamentals of WOX (i.e., crystal and electronic structures and optical properties) and then highlights the strategies for the enhancement of the photocatalytic efficiency of WOX-based photocatalysts. The related synthesis methods are also briefly discussed. It is anticipated that this paper could offer a comprehensive understanding of WOX-based photocatalysts and serve as a guideline for future designs of highly active visible light-driven WOX-based photocatalysts.
机译:光催化(PC)技术由于其仅使用Solar Light作为能量输入而使用太阳灯来解决环境和能源问题的高潜力而受到了全局的关注。然而,PC技术的大规模商业化仍然远非预期,这主要受低效率的限制。 PC技术的发展至关重要在光催化剂材料上。在过去半个世纪中,TiO2大多被调查并发展为基准光催化剂。然而,TiO2本质上仅对UV光进行响应,这限制了其对太阳能的有效利用率,并限制了其在UV光不可用的应用中的应用,例如室内空气净化。新颖的本质上可见光催化的开发是PC技术的新趋势。在各种可见光响应性候选者中,氧化钨(WOX,X <= 3)由于它们的多种可调的化学物质和结构,合适的带隙,化学稳定性和地球丰度而引起了很多关注。然而,由于光发生的电子和孔的快速复合速率,裸WOX表现出相对低的效率。已经开发了各种策略来提高WOX的光催化效率,包括晶相,化学计量/氧空位,有源方面和形态学,元素掺杂,贵金属纳米粒子的掺杂,与碳材料的杂交和与其他半导体的偶联。构建异质结。本综述总结了WOX(即晶体和电子结构和光学性质)的基本原理,然后突出了加强了基于WOX的光催化剂的光催化效率的策略。还简要讨论了相关的合成方法。预计本文可以全面了解WOX为基础的光催化剂,并作为未来设计高活跃可见光型WOX基光催化剂的指导。

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