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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Mie resonance in hollow nanoshells of ternary TiO2-Au-CdS and enhanced photocatalytic hydrogen evolution
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Mie resonance in hollow nanoshells of ternary TiO2-Au-CdS and enhanced photocatalytic hydrogen evolution

机译:中空纳米核苷酸的阶段共振,增强光催化氢气进化

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摘要

We design a ternary TiO2-Au-CdS photocatalyst with controllable Mie scattering peak for the first time to verify if matching the Mie scattering peak with the absorption peak of semiconductors could greatly improve their photocatalytic performances. By varying the inner diameter of TiO2 nanoshell from 150 to 255 nm, the Mie scattering peak was controlled from below 370-510 nm. When the Mie scattering peak of TiO2 nanoshell (inner diameter = 185 nm) matches the absorption band of CdS, a highest visible-light photocatalytic hydrogen production rate (669.7 mu mol h(-1) g(-1)) was observed among all the ternary photocatalysts with different inner diameters. The backscattering calculation based on Mie's theory and the comparison of photocatalytic performances of different composite catalysts including TiO2, TiO2-Au, and TiO2-CdS hollow nanoshells also confirmed that the scattering phenomenon in hollow nanoshells is beneficial for photocatalysis. This work may favor various technological applications of Mie scattering for effective light utilization.
机译:我们设计具有可控MIE散射峰的三元TiO2-AU-CDS光催化剂,首次验证与半导体的吸收峰匹配的MIE散射峰值是否可以大大提高它们的光催化性能。通过从150至255nm的TiO2纳米液的内径改变,MIE散射峰被控制在370-510nm以下。当TiO2纳米壳(内径= 185nm)的MIE散射峰匹配CD的吸收带时,在所有情况下观察到最高的可见光光催化氢气产生率(669.7μmolH(-1)g(-1))内部直径不同的三元光催化剂。基于MIE理论的反向散射计算和不同复合催化剂的光催化性能的比较,包括TiO2,TiO2-Au和TiO2-CDS中空纳米孔也证实了中空纳米壳中的散射现象是有益的光催化。这项工作可能有利于MIE散射的各种技术应用,以实现有效光利用。

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