首页> 外文期刊>Applied Surface Science >TiO_2 nanosheets with exposed {001} facets co-modified by Ag_xAu_(1-x) NPs and 3D ZnIn_2S_4 microsphere for enhanced visible light absorption and photocatalytic H_2 production
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TiO_2 nanosheets with exposed {001} facets co-modified by Ag_xAu_(1-x) NPs and 3D ZnIn_2S_4 microsphere for enhanced visible light absorption and photocatalytic H_2 production

机译:TiO_2纳米片具有暴露的{001}叶片通过AG_XAU_(1-X)NPS和3D Znin_2S_4微球,用于增强可见光吸收和光催化H_2生产

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A novel AgxAu1-x/ZnIn2S4/TiO2 photocatalyst with high photoactivity under visible light illumination is designed in this work, in which ZnIn2S4 displays a 3D flower-like microsphere structure, while TiO2 nanosheets with highly active {001} facets (TiO2 NS) are tightly embedded in the interspaces of ZnIn2S4 microspheres, and AgxAu1-x nanoparticles (NPs) are loaded on its surface, respectively. The exquisite design of AgxAu1-x/ZnIn2S4/TiO2 makes it possess remarkable superiority in photocatalysis. Firstly, by the dual modification of ZnIn2S4 and AgxAu1-x, the AgxAu1-x/ZnIn2S4/TiO2 displays a strong absorption in visible light region, and their absorption region can be modulated by changing the ratio of Ag and Au in AgxAu1-x nanoparticles due to the plasmon coupling effect of Ag and Au. Secondly, the high separation and transfer efficiency of photogenerated carriers is achieved in AgxAu1-x/ZnIn2S4/TiO2 by utilizing TiO2 as the electron transfer intermediary of ZnIn2S4 and AgxAu1-x. All of these make AgxAu1-x/ZnIn2S4/TiO2 exhibit an evident enhancement in the photocatalytic activity of H-2 production. Significantly, the hydrogen production amount and rate of Ag0.2Au0.8/ZnIn2S4/TiO2 with 60 wt% ZIS after 10 h are 9862 mu mol/g and 986.2 mu mol/g/h, which is around 2098 times of pristine TiO2. The apparent quantum yield of Ag0.2Au0.8/ZnIn2S4/TiO2 after 10 h is about 1.47%. Moreover, the cycling test reveals that AgxAu1-x/ZnIn2S4/TiO2 shows the high stability in photocatalytic water spitting. Based on the characterization and photocatalytic results, the proposed photocatalytic mechanism is proposed.
机译:在这项工作中设计了具有高拍摄性的agxau1-X / Znin2S4 / TiO2光催化剂,其中Znin2S4显示了3D花样的微球结构,而具有高活性{001}刻面(TiO2 NS)的TiO2纳米片是紧紧嵌入Znin2S4微球的间隙中,Agxau1-X纳米颗粒(NPS)分别在其表面上装载。 Agxau1-X / Znin2S4 / TiO2的精致设计使其在光催化中具有显着的优越性。首先,通过Znin2S4和Agxau1-X的双重修饰,Agxau1-X / Znin2S4 / TiO2在可见光区域中显示出强烈的吸收,并且可以通过改变Agxau1-X纳米粒子中的Ag和Au的比例来调节它们的吸收区域由于AG和Au的等离子体偶联效果。其次,通过利用TiO2作为Znin2S4和Agxau1-X的电子转移中间体,在Agxau1-X / Znin2S4 / TiO 2中实现了光生载体的高分离和转移效率。所有这些使Agxau1-X / Znin2S4 / TiO2在H-2生产的光催化活性中表现出明显的增强。值得注意的是,10小时后,具有60wt%ZIS的氢气产量和Ag0​​.2au0.8 / Znin2S4 / TiO2的速率为9862μmmol/ g和986.2μmol/ g / h,其约为原始TiO2约2098次。 10小时后Ag0.2au0.8 / Znin2S4 / TiO2的表观量子产率约为1.47%。此外,循环试验显示,Agxau1-X / Znin2S4 / TiO2显示出光催化水吐痰的高稳定性。基于表征和光催化结果,提出了所提出的光催化机理。

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