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单螯合、双螯合和三螯合链烷硫醇包覆的金纳米颗粒的制备、表征及化学稳定性

Preparation, characterization, and chemical stability of gold nanoparticles coated with mono-, bis-, and tris-chelating alkanethiols.

作者信息

Srisombat La-Ongnuan, Park Joon-Seo, Zhang Shishan, Lee T Randall

机构信息

Department of Chemistry, University of Houston, 4800 Calhoun Road, Houston, Texas 77204-5003, USA.

出版信息

Langmuir. 2008 Aug 5;24(15):7750-4. doi: 10.1021/la800511g. Epub 2008 Jul 12.

Abstract

A systematically varying series of monolayer-protected clusters (MPCs) was prepared by exposing small gold nanoparticles ( approximately 2 nm in diameter) to the following four adsorbates: n-octadecanethiol ( n - C18), 2-hexadecylpropane-1,3-dithiol ( C18C2), 2-hexadecyl-2-methylpropane-1,3-dithiol ( C18C3), and 1,1,1-tris(mercaptomethyl)heptadecane ( t - C18). The resultant MPCs were characterized by solubility studies, UV-vis spectroscopy, transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), and Fourier-transform infrared spectroscopy (FT-IR). All of the MPCs were soluble in common organic solvents; moreover, analysis by TEM showed that the core dimensions were unaffected by exposure to any of the adsorbates. Separate studies by XPS revealed that the sulfur atoms in all MPCs were predominantly bound to the surface of gold (i.e., approximately 85% or better). Analysis by FT-IR showed that MPCs functionalized with n - C18 possessed alkyl chains having the greatest conformational order in both the solid-state and dispersed in solution; in contrast, those generated from the other three adsorbates were more liquid-like with reduced conformational order (or crystallinity). The rate of nanoparticle decomposition induced by cyanide ions was monitored by UV-vis spectroscopy. While MPCs functionalized with n - C18 showed the fastest rate of decomposition, those functionalized with C18C3 were the most resistant to decomposition. Overall, the following trend in chemical stability was observed, C18C3 >> C18C2 > t - C18 >> n - C18.

摘要

通过将小金纳米颗粒(直径约2纳米)暴露于以下四种吸附剂,制备了一系列系统变化的单层保护簇(MPC):正十八烷硫醇(n-C18)、2-十六烷基丙烷-1,3-二硫醇(C18C2)、2-十六烷基-2-甲基丙烷-1,3-二硫醇(C18C3)和1,1,1-三(巯基甲基)十七烷(t-C18)。通过溶解度研究、紫外-可见光谱、透射电子显微镜(TEM)、X射线光电子能谱(XPS)和傅里叶变换红外光谱(FT-IR)对所得MPC进行了表征。所有MPC都可溶于常见有机溶剂;此外,TEM分析表明,核心尺寸不受任何吸附剂暴露的影响。XPS单独研究表明,所有MPC中的硫原子主要与金表面结合(即约85%或更高)。FT-IR分析表明,用n-C18功能化的MPC在固态和溶液分散态中都具有构象有序度最高的烷基链;相比之下,由其他三种吸附剂生成的MPC更具液态,构象有序度(或结晶度)降低。通过紫外-可见光谱监测氰离子诱导的纳米颗粒分解速率。虽然用n-C18功能化的MPC显示出最快的分解速率,但用C18C3功能化的MPC对分解最具抗性。总体而言,观察到以下化学稳定性趋势:C18C3 >> C18C2 > t-C18 >> n-C18。

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