首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Hollow Au-Cu2O-Core-Shell Nanoparticles with Geometry-Dependent Optical Properties as Efficient Plasmonic Photocatalysts under Visible Light
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Hollow Au-Cu2O-Core-Shell Nanoparticles with Geometry-Dependent Optical Properties as Efficient Plasmonic Photocatalysts under Visible Light

机译:空心Au-Cu2O-核壳纳米粒子在可见光下具有高效的等离子体光催化剂,具有几何依赖性的光学性质

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摘要

Hollow Au-Cu2O core shell nanoparticles were synthesized by using hollow gold nanoparticles (HGNs) as the plasmon-tailorable cores to direct epitaxial growth of Cu2O nanoshells. The effective geometry control of hollow Au-Cu2O core shell nanoparticles was achieved through adjusting the HGN core sizes, Cu2O shell thicknesses, and morphologies related to structure-directing agents. The morphology-dependent plasmonic band red-shifts across the visible and near-infrared spectral regions were observed from experimental extinction spectra and theoretical simulation based on the finite-difference time-domain method. Moreover, the hollow Au-Cu2O core shell nanoparticles with synergistic optical properties exhibited higher photocatalytic performance in the photodegradation of methyl orange when compared to pristine Cu2O and solid Au-Cu2O core shell nanoparticles under visible-light irradiation due to the efficient photoinduced charge separation, which could mainly be attributed to the Schottky barrier and plasmon-induced resonant energy transfer. Such optical tunability achieved through the hollow cores and structure-directed shells is of benefit to the performance optimization of metal semiconductor nanoparticles for photonic, electronic, and photocatalytic applications.
机译:以空心金纳米颗粒(HGNs)为等离子可定制的核,指导Cu2O纳米壳的外延生长,合成了空心Au-Cu2O核壳纳米颗粒。通过调节HGN核的尺寸,Cu2O壳的厚度以及与结构导向剂有关的形态,可以有效控制中空Au-Cu2O核壳纳米粒子的几何形状。从实验消光光谱和基于有限差分时域方法的理论模拟观察到了可见光和近红外光谱区域中形态学相关的等离激元能带红移。此外,与可见光照射下的原始Cu2O和固态Au-Cu2O核壳纳米粒子相比,具有协同光学性能的中空Au-Cu2O核壳纳米粒子在甲基橙的光降解中表现出更高的光催化性能,这是由于有效的光诱导电荷分离,这主要归因于肖特基势垒和等离子体激元诱导的共振能量转移。通过中空芯和结构定向的壳实现的这种光学可调性有利于优化用于光子,电子和光催化应用的金属半导体纳米粒子的性能。

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