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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >An infrared reflectance spectroscopic study of a pH-tunable network of nanoparticles linked by hydrogen bonding
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An infrared reflectance spectroscopic study of a pH-tunable network of nanoparticles linked by hydrogen bonding

机译:通过氢键连接的纳米粒子的pH可调网络的红外反射光谱研究

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摘要

This paper presents novel findings of the pH-tunable structural properties of a hydrogen-bonded nanoparticle network using an infrared reflectance spectroscopic (IRS) technique. Gold nanoparticles encapsulated with thiolates and alkylthiols terminated with carboxylic groups were utilized as building blocks and molecular linkers, respectively, for assembling the network film. The IRS bands associated with the reactivities of the carboxylic acid groups on the nanoparticles allowed us to analyze the structures during surface titration of the network thin films. IRS data have revealed that the network, linked by predominantly head-to-head hydrogen bonding, could be reversibly tuned between the neutral protonated and the ionic deprotonated states. This protonation/deprotonation process was also found to exhibit membrane-type properties, as supported by open-circuit potential measurement of the membrane. These findings have important implications to designing nanoparticle-based functional nanostructures for molecular recognition. [References: 40]
机译:本文介绍了使用红外反射光谱(IRS)技术的氢键结合的纳米粒子网络的pH可调结构特性的新发现。用硫醇盐和被羧基封端的烷基硫醇封装的金纳米颗粒分别用作结构单元和分子连接体,用于组装网络薄膜。与纳米粒子上羧酸基团的反应性相关的IRS带使我们能够分析网络薄膜的表面滴定过程中的结构。美国国税局(IRS)的数据表明,通过主要的头对头氢键连接的网络可以在中性质子化和离子去质子化状态之间可逆地调节。还发现该质子化/去质子化过程表现出膜型性质,这通过膜的开路电势测量来支持。这些发现对设计用于分子识别的基于纳米颗粒的功能纳米结构具有重要意义。 [参考:40]

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