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Ag2O/TiO2/V2O5 one-dimensional nanoheterostructures for superior solar light photocatalytic activity

机译:Ag2O /二氧化钛/ V2O5维nanoheterostructures优越的太阳能灯光催化活性

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Titanium dioxide has attracted considerable interest as a prototypical semiconductor photocatalyst However, because of the relative large bandgap energy, further application of TiO2 photocatalyst is limited by its inefficient solar energy conversion. Various attempts have been made to broaden the light absorption window of the TiO2, such as growth of TiO2-based heterostructures. Herein, a novel three-component system, Ag2O/TiO2/V2O5 one-dimensional nanoheterostructures with enhanced solar light absorption, is prepared by depositing Ag2O nanoparticles onto the surface of TiO2/V2O5 nanofibers through a two-step synthetic process. This three-component system exhibits excellent solar-driven photocatalytic activity, far exceeding those of the single- and two-component systems, as a result of extended solar light absorption and efficient electron-hole separation. Furthermore, the photocatalytic performance of Ag2O/TiO2/V2O5 one-dimensional nanoheterostructures is very stable for recycling use.
机译:二氧化钛已经吸引了相当大的兴趣作为一种典型的半导体然而,光催化剂由于相对大带隙能量,二氧化钛的进一步应用由其低效率的太阳能光催化剂是有限的能量转换。扩大的光吸收窗口二氧化钛,比如TiO2-based的增长异质结构。系统,Ag2O /二氧化钛/ V2O5维nanoheterostructures增强太阳能灯吸收,由沉淀Ag2O准备纳米粒子在表面的二氧化钛/ V2O5通过两步合成纳米纤维的过程。这个三分量系统展示优秀的太阳能光催化活性,太远了超过单-和双组分系统中,由于太阳能灯吸收和有效电子空穴分离。性能Ag2O /二氧化钛/ V2O5维为回收nanoheterostructures非常稳定使用。

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