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金纳米粒子化学电阻对水溶液中有机分析物的动态响应。

Dynamic response of gold nanoparticle chemiresistors to organic analytes in aqueous solution.

机构信息

CSIRO, Materials Science and Engineering, Sydney, NSW 2070, Australia.

出版信息

Phys Chem Chem Phys. 2011 Oct 28;13(40):18208-16. doi: 10.1039/c1cp20242a. Epub 2011 Sep 19.

Abstract

We investigate the response dynamics of 1-hexanethiol-functionalized gold nanoparticle chemiresistors exposed to the analyte octane in aqueous solution. The dynamic response is studied as a function of the analyte-water flow velocity, the thickness of the gold nanoparticle film and the analyte concentration. A theoretical model for analyte limited mass-transport is used to model the analyte diffusion into the film, the partitioning of the analyte into the 1-hexanethiol capping layers and the subsequent swelling of the film. The degree of swelling is then used to calculate the increase of the electron tunnel resistance between adjacent nanoparticles which determines the resistance change of the film. In particular, the effect of the nonlinear relationship between resistance and swelling on the dynamic response is investigated at high analyte concentration. Good agreement between experiment and the theoretical model is achieved.

摘要

我们研究了暴露于水溶液中分析物辛烷的 1-己硫醇功能化金纳米粒子化学电阻器的响应动力学。研究了作为分析物-水流速、金纳米粒子膜厚度和分析物浓度函数的动态响应。使用分析物限制质量传输的理论模型来模拟分析物扩散到膜中、分析物分配到 1-己硫醇帽层以及随后的膜溶胀。然后,溶胀程度用于计算相邻纳米粒子之间电子隧道电阻的增加,这决定了膜的电阻变化。特别地,在高分析物浓度下研究了电阻与溶胀之间的非线性关系对动态响应的影响。实验与理论模型之间达到了良好的一致性。

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