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Reduced graphene oxide as capturer of dyes and electrons during photocatalysis: surface wrapping and capture promoted efficiency

机译:减少氧化石墨烯在光催化过程中作为染料和电子的捕获剂:表面包裹和捕获提高了效率

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摘要

To elucidate the roles of graphene in photoelectric events and mass transfer during photocatalytic process is important for engineering graphene-semiconductor hybrid photocatalyst. Here, we demonstrated reduced graphene oxide (RGO) capturing dyes and photoinduced electrons during photocatalytic degradation of organic dyes in water. It captures dyes from water through adsorption and desorption irreversible hysteresis, and captures photoinduced electrons from semiconductor through surface junction. The RGO was attached to the surface of TiO2 in the form of surface wrapping. After one-step photocatalytic reduction of graphene oxide (GO) and TiO2 in ethanol-water solvent under UV irradiation, the RGO wrapped TiO2 hybrid (graphene-w-TiO2) photocatalyst was obtained. Using visible absorption spectroscopy, we also demonstrated these captured dyes were degraded during photocatalysis. The photocatalytic test showed the RGO significantly improved the photocatalytic activity of this hybrid photocatalyst.
机译:阐明石墨烯在光催化过程中的光电事件和传质中的作用对于工程化石墨烯-半导体杂化光催化剂很重要。在这里,我们展示了还原性氧化石墨烯(RGO)捕获染料和光致电子在水中有机染料的光催化降解过程中。它通过不可逆的吸附和解吸作用从水中捕获染料,并通过表面结从半导体捕获光致电子。 RGO以表面包裹的形式附着在TiO2的表面上。在紫外光下,一步法在乙醇-水溶剂中一步氧化还原氧化石墨烯(GO)和TiO2,得到了RGO包裹的TiO2杂化体(石墨烯-w-TiO2)。使用可见吸收光谱,我们还证明了这些捕获的染料在光催化过程中被降解。光催化测试表明,RGO显着提高了这种杂化光催化剂的光催化活性。

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