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金纳米粒子在改进分析方法中的潜在作用:特性与应用简介。

Potential role of gold nanoparticles for improved analytical methods: an introduction to characterizations and applications.

机构信息

Department of Materials Science and Engineering and Institute of Nanotechnology, National Chiao Tung University, Hsinchu 300, Taiwan.

出版信息

Anal Bioanal Chem. 2011 Jan;399(1):103-18. doi: 10.1007/s00216-010-4094-9. Epub 2010 Aug 19.

Abstract

Nanoparticle-based material is a revolutionary scientific and engineering venture that will invariably impact the existing analytical separation and preconcentration for a variety of analytes. Nanoparticles can be regarded as a hybrid between small molecule and bulk material. A material on the nanoscale produces considerable changes on various properties, making them size- and shape-dependent. Gold nanoparticles (Au NPs), one of the wide variety of core materials available, coupled with tunable surface properties in the form of inorganic or inorganic-organic hybrid have been reported as an excellent platform for a broad range of analytical methods. This review aims to introduce the basic principles, examples, and descriptions of methods for the characterization of Au NPs by using chromatography, electrophoresis, and self-assembly strategies for separation science. Some of the latest important applications of using Au NPs as stationary phases toward open-tubular capillary electrochromatography, gas chromatography, and liquid chromatography as well as roles of run buffer additive to enhance separation and preconcentration in the field of chromatographic, electrophoretic and in chip-based systems are reviewed. Additionally, we review Au NPs-assisted state-of-the-art techniques involving the use of micellar electrokinetic chromatography, an online diode array detector, solid-phase extraction, and mass spectrometry for the preconcentration of some chemical compounds and biomolecules.

摘要

基于纳米粒子的材料是一项具有开创性的科学和工程事业,将不可避免地影响现有的各种分析物的分析分离和预浓缩。纳米粒子可以被看作是小分子和块状材料之间的混合体。纳米级材料在各种性质上产生了相当大的变化,使其具有尺寸和形状依赖性。金纳米粒子(Au NPs)是可用的多种核心材料之一,加上可调节的无机或无机-有机杂化表面性质,已被报道为广泛的分析方法的优秀平台。本文旨在介绍通过色谱法、电泳法和自组装策略对 Au NPs 进行表征的基本原理、实例和描述,用于分离科学。综述了最新的一些重要应用,包括将 Au NPs 用作固定相的开管毛细管电色谱、气相色谱和液相色谱,以及作为运行缓冲添加剂的作用,以增强色谱、电泳和基于芯片系统中的分离和预浓缩。此外,我们还综述了 Au NPs 辅助的最新技术,包括使用胶束电动色谱、在线二极管阵列检测器、固相萃取和质谱法对一些化学化合物和生物分子进行预浓缩。

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