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通过各向异性表面等离子体共振探测金纳米颗粒上氢吸附和电荷转移的机制。

Mechanism of hydrogen adsorption on gold nanoparticles and charge transfer probed by anisotropic surface plasmon resonance.

作者信息

Watkins William L, Borensztein Yves

机构信息

Sorbonne Universités, UPMC Univ Paris 06, CNRS-UMR 7588, Institut des NanoSciences de Paris, F-75005, Paris, France.

出版信息

Phys Chem Chem Phys. 2017 Oct 18;19(40):27397-27405. doi: 10.1039/c7cp04843b.

Abstract

The adsorption of hydrogen on Au nanoparticles (NPs) of size of the order of 10 nm has been investigated by use of localised surface plasmon resonances (LSPR) in the NPs. The samples, formed by Au NPs obtained by oblique angle deposition on glass substrates, display a strong optical dichroism due to two different plasmon resonances dependent on the polarisation of light. This ensured the use of Transmittance Anisotropy Spectroscopy, a sensitive derivative optical technique, which permitted one to measure shifts of the LSPR as small as 0.02 nm upon H adsorption, which are not accessible by conventional plasmonic methods. The measured signal is proportional to the area of the NPs, which shows that H atoms diffuse on their facets. A negative charge transfer from Au to H is clearly demonstrated.

摘要

利用纳米颗粒中的局域表面等离子体共振(LSPR)研究了氢气在尺寸约为10纳米的金纳米颗粒(NPs)上的吸附情况。通过倾斜角沉积在玻璃基板上获得的金纳米颗粒形成的样品,由于依赖于光偏振的两种不同等离子体共振而呈现出强烈的光学二向色性。这确保了可以使用透射率各向异性光谱法,这是一种灵敏的衍生光学技术,它能够测量氢气吸附时低至0.02纳米的LSPR位移,而这是传统等离子体方法无法实现的。测得的信号与纳米颗粒的面积成正比,这表明氢原子在其晶面上扩散。清楚地证明了从金到氢的负电荷转移。

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