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热处理后分子连接的金纳米颗粒聚集体的光谱表征。

Spectroscopic characterizations of molecularly linked gold nanoparticle assemblies upon thermal treatment.

作者信息

Luo Jin, Maye Mathew M, Han Li, Kariuki Nancy N, Jones Vivian W, Lin Yuehe, Engelhard Mark H, Zhong Chuan-Jian

机构信息

Department of Chemistry, State University of New York at Binghamton, Binghamton, New York 13902, USA.

出版信息

Langmuir. 2004 May 11;20(10):4254-60. doi: 10.1021/la036163t.

Abstract

The understanding of surface properties of core-shell type nanoparticles is important for exploiting the unique nanostructured catalytic properties. We report herein findings of a spectroscopic investigation of the thermal treatment of such nanoparticle assemblies. We have studied assemblies of gold nanocrystals of approximately 2 nm core sizes that are capped by alkanethiolate shells and are assembled by covalent or hydrogen-bonding linkages on a substrate as a model system. The structural evolution of the nanoparticle assemblies treated at different temperatures was probed by several spectroscopic techniques, including UV-visible, Fourier transform infrared (FTIR), and X-ray photoelectron spectroscopy (XPS). The results show that the capping/linking shell molecules can be effectively removed to produce controllable surface and optical properties. The data further revealed that the thermally induced evolution of the surface plasmon resonance property of gold nanoparticles is dependent on the chemical nature of the linker molecule. The spectral evolution is discussed in terms of changes in particle size, interparticle distance, and dielectric medium properties, which has important implications for controlled preparation and thermal processing of core-shell nanostructured metal catalysts.

摘要

了解核壳型纳米颗粒的表面性质对于开发其独特的纳米结构催化性能至关重要。我们在此报告对这类纳米颗粒组装体进行热处理的光谱研究结果。我们研究了以硫醇盐壳为帽、通过共价或氢键连接在基底上组装的、核心尺寸约为2 nm的金纳米晶体组装体作为模型系统。通过几种光谱技术,包括紫外可见光谱、傅里叶变换红外光谱(FTIR)和X射线光电子能谱(XPS),探测了在不同温度下处理的纳米颗粒组装体的结构演变。结果表明,封端/连接壳分子可以被有效去除,以产生可控的表面和光学性质。数据进一步揭示,金纳米颗粒表面等离子体共振性质的热诱导演变取决于连接分子的化学性质。根据粒径、颗粒间距离和介电介质性质的变化对光谱演变进行了讨论,这对核壳纳米结构金属催化剂的可控制备和热处理具有重要意义。

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