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首页> 外文期刊>RSC Advances >Enhanced piezo-photocatalytic performance by piezoelectric and visible light photoexcitation coupling through piezoelectric Na0.5Bi0.5TiO3 micron crystals
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Enhanced piezo-photocatalytic performance by piezoelectric and visible light photoexcitation coupling through piezoelectric Na0.5Bi0.5TiO3 micron crystals

机译:通过压电Na0.5bi0.5tio3微晶的压电和可见光光透镜耦合增强压电和可见光催化性能

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摘要

The unique piezoelectric potential of piezoelectrics could lead to performance gains for electrochemical catalysis. Here, a cuboid-like Na _(0.5) Bi _(0.5) TiO _(3) (NBTO) piezoelectric micron crystal was synthesized by a hydrothermal process. The piezocatalytic and visible light assisted piezo-photocatalytic activities of NBTO were investigated. Surprisingly, under ultrasonic vibration and visible light irradiation, the NBTO exhibited four times faster degradation rate than that under ultrasonic vibration only, although the NBTO doesn't absorb visible light. An efficient coupling between piezoelectric effect and visible light photoexcitation in NBTO was directly demonstrated. The improved piezo-photocatalytic performance is attributed to the piezoelectric potential and the decrease of bandgap of NBTO micron crystal due to strain induced by ultrasonic vibration. A new fundamental mechanism for the improved degradation of organic dye has been proposed for piezoelectric and photoexcitation coupling. This work extends the application of wide band gap piezoelectric materials in the visible light area.
机译:压电的独特压电电位可能导致电化学催化的性能增益。这里,通过水热过程合成了长方体状Na _(0.5)Bi _(0.5)bi(0.5)TiO _(3)(NBTO)压电微米晶体。研究了NBTO的压电催化和可见光辅助压电催化活性。令人惊讶的是,在超声波振动和可见光照射下,Nbto仅比超声波振动的降解率快四倍,尽管Nbto不吸收可见光。直接证明了压电效应和NbTo中可见光光透镜之间的有效耦合。改进的压电催化性能归因于通过超声波振动引起的菌株引起的压电电位和NbTo微米晶体的带隙的降低。提出了一种新的有机染料降解的新基本机制,用于压电和光透镜耦合。该工作扩展了宽带隙压电材料在可见光区域中的应用。

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