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三芳胺功能化金纳米粒子的电化学和光学特性。

Electrochemical and optical characterization of triarylamine functionalized gold nanoparticles.

机构信息

Institut für Organische Chemie and Wilhelm Con/rad Röntgen Research Center for Complex Material Systems (RCCM), Julius-Maximilians-Universität Würzburg, Am Hubland, 97074 Würzburg, Germany.

出版信息

Langmuir. 2011 Apr 19;27(8):5029-39. doi: 10.1021/la1051244. Epub 2011 Mar 18.

Abstract

This paper describes the synthesis, structural analysis, and investigations of the optical and electrochemical properties of some gold nanoparticles (AuNPs) which consist of a triarylamine ligand shell attached to small gold cores (Au-Tara). The triarylamine chromophores were attached to small 4-bromobenzenethiol covered gold nanoparticles (ca. 2 nm in diameter) by Sonogashira reaction. This procedure yields triarylamine redox centers attached via π-conjugated bridging units of different length to the gold core. The AuNPs were analyzed with (1)H NMR spectroscopy, diffusion ordered NMR spectroscopy (DOSY), thermogravimetric analysis (TGA), and scanning transmission electron microscopy (STEM). Cyclic voltammetry (CV) technique was used to determine the composition of the redox active particles via the Randles-Sevcik equation. The optical and electrochemical properties of the Au-Tara nanoparticles and of their corresponding unbound ligands (Ref) were investigated with UV/vis/NIR absorption spectroscopy, Osteryoung square wave voltammetry (OSWV), and spectroelectrochemistry (SEC). These data show that the assembling of triarylamines in the vicinity of a gold nanoparticle can change the optical and electrochemical properties of the triarylamine redox chromophores depending on the kind and length of the bridging unit. This is due to gold core-chromophore and chromophore-chromophore interactions.

摘要

本文描述了一些金纳米粒子(AuNPs)的合成、结构分析以及光学和电化学性质的研究,这些金纳米粒子由附着在小金核(Au-Tara)上的三芳基胺配体壳组成。三芳基胺生色团通过 Sonogashira 反应附着在小的 4-溴苯硫醇覆盖的金纳米粒子(直径约 2nm)上。该程序生成通过不同长度的π共轭桥接单元连接到金核的三芳基胺氧化还原中心。AuNPs 通过 1H NMR 光谱、扩散有序 NMR 光谱(DOSY)、热重分析(TGA)和扫描透射电子显微镜(STEM)进行分析。通过 Randles-Sevcik 方程,循环伏安法(CV)技术用于通过循环伏安法(CV)技术确定氧化还原活性颗粒的组成。通过紫外/可见/近红外吸收光谱、Osteryoung 方波伏安法(OSWV)和光谱电化学(SEC)研究了 Au-Tara 纳米粒子及其相应的未结合配体(Ref)的光学和电化学性质。这些数据表明,三芳基胺在金纳米粒子附近的组装可以根据桥接单元的种类和长度改变三芳基胺氧化还原生色团的光学和电化学性质。这是由于金核-生色团和生色团-生色团相互作用。

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