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Au@TiO2-CdS Ternary Nanostructures for Efficient Visible-Light-Driven Hydrogen Generation

机译:Au @ TiO2-CdS三元纳米结构,用于高效可见光驱动氢生成

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We report a new type of Au@TiO2-CdS ternary nanostructure by decorating CdS nanoparticles onto Au@TiO2 core—shell structures. In comparison to that of binary structures such as CdS—TiO2 and Au@TiO2, these ternary nanostructures exhibit a remarkably high photocatalytic regeneration rate under visible-light irradiation. The enhanced photocatalytic activity is attributed to the unique ternary design, which builds up a transfer path for the photoexcited electrons of CdS to the core Au particles via the TiO2 nanocrystal bridge and thus effectively suppresses the electron-hole recombination on the CdS photocatalyst. This internal electron-transfer pathway (CdS → TiO2→ Au) eliminates the need for the postdeposition of the metal cocatalyst because the core Au nanoparticles can act as the interior active catalyst for proton reduction toward hydrogen evolution. We believe that our work demonstrates a promising way for the rational design of metal-semiconductor hybrid photocatalysts that can achieve a high photocatalytic efficiency for use in solar fuels production.
机译:通过将CdS纳米颗粒装饰到Au @ TiO2核-壳结构上,我们报告了一种新型的Au @ TiO2-CdS三元纳米结构。与二元结构(如CdS-TiO2和Au @ TiO2)相比,这些三元纳米结构在可见光照射下显示出非常高的光催化再生速率。增强的光催化活性归因于独特的三元设计,该三元设计为CdS的光激发电子通过TiO2纳米晶体桥建立了到核Au粒子的转移路径,从而有效地抑制了CdS光催化剂上的电子-空穴复合。这种内部电子传输途径(CdS→TiO2→Au)消除了对金属助催化剂的后沉积的需要,因为核心Au纳米粒子可以充当内部活性催化剂,使质子还原成氢。我们认为,我们的工作为合理设计金属-半导体混合光催化剂展示了一种有前途的方法,该方法可以实现用于太阳能燃料生产的高光催化效率。

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