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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Enhancing Photochemical Activity of Semiconductor Nanoparticles with Optically Active Ag Nanostructures: Photochemistry Mediated by Ag Surface Plasmons
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Enhancing Photochemical Activity of Semiconductor Nanoparticles with Optically Active Ag Nanostructures: Photochemistry Mediated by Ag Surface Plasmons

机译:具有光学活性的银纳米结构增强半导体纳米粒子的光化学活性:银表面等离子体介导的光化学

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摘要

Composite materials composed of optically active Ag nanostructures and TiO2 photocatalysts show enhanced photoactivity compared to the pure TiO2 in the decomposition of methylene blue. The enhanced photochemical activity is attributed to radiative transfer of energy, mediated by surface plasmons, from Ag particles to the semiconductor leading to higher concentrations of charge carriers (e~_/h~+ pairs) in the semiconductor and therefore to higher photochemical activity. We demonstrate that the performance of the composite photocatalysts is a strong function of the size and shape of Ag nanostructures. This can be explained by the size- and shape-specific optical activity of Ag nanostructures. We show that by rationally changing the size and shape of Ag nanostructures it is possible to maximize photochemical activity of a semiconductor at a given excitation wavelength.
机译:由光学活性银纳米结构和TiO2光催化剂组成的复合材料在亚甲基蓝的分解中比纯TiO2具有更高的光活性。光化学活性的增强归因于由表面等离子体激元介导的能量从Ag粒子到半导体的辐射转移,从而导致半导体中更高浓度的电荷载流子(e_ / h〜+对),因此归因于更高的光化学活性。我们证明了复合光催化剂的性能是银纳米结构的大小和形状的强大功能。这可以通过Ag纳米结构的尺寸和形状特定的光学活性来解释。我们表明,通过合理地改变Ag纳米结构的尺寸和形状,可以在给定的激发波长下最大化半导体的光化学活性。

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