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多功能有机分子在金属纳米颗粒合成与组装中的作用

Role of polyfunctional organic molecules in the synthesis and assembly of metal nanoparticles.

作者信息

Sharma Jadab, Kakade Bhalchandra A, Chaki Nirmalya K, Mahima S, Pillai Vijayamohanan K

机构信息

Physical and Materials Chemistry Division, National Chemical Laboratory, Pune 411008, India.

出版信息

J Nanosci Nanotechnol. 2007 Jun;7(6):2139-50. doi: 10.1166/jnn.2007.784.

DOI:10.1166/jnn.2007.784
PMID:17655007
Abstract

The role of polyfunctional organic molecules in the synthesis of differently shaped metallic nanostructures and their assembly is investigated. These molecules could be used as spacer ligands and also for surface passivation of nanoparticles, especially with the objective of controlling their electronic and optical properties depending on their length scales. We investigate the role of several such molecules, such as 4-aminothiophenol, tridecylamine, Bismarck brown R and Y, mordant brown, fat brown, chrysoidin (basic orange), and 3-aminobenzoic acid in the synthesis and assembly of various nanoparticles of gold and silver. For example, the use of 4-ATP helps in the formation of rod shaped micelles in aqueous acetonitrile as confirmed by transmission electron microscopy (TEM) suggesting their role as soft templates. In addition, 4-ATP has also been used for the formation of heteroassembly of spherical nanoparticles of gold and silver at controlled pH. Significantly, triangular and hexagonal gold nanoplates are formed at room temperature by similar polyfunctional dye molecule, Bismarck brown R (BBR), while other analogous dye molecules give only arbitrary shaped gold nanoparticles. Further confirmation of their role in shape determination comes from linear amine molecules such as tridecylamine, which give only spherical nanoparticles both for silver and gold. In essence, our study confirms the role of various such organic molecules in shape controlled synthesis of nanoparticles. We also report optical and electrochemical properties of few of these nanostructures as a function of their shape.

摘要

研究了多功能有机分子在不同形状金属纳米结构的合成及其组装中的作用。这些分子可用作间隔配体,也可用于纳米粒子的表面钝化,特别是旨在根据其长度尺度控制其电子和光学性质。我们研究了几种此类分子的作用,例如4-氨基硫酚、十三胺、俾斯麦棕R和Y、媒染棕、脂肪棕、碱性橙黄和3-氨基苯甲酸在金和银的各种纳米粒子的合成和组装中的作用。例如,通过透射电子显微镜(TEM)证实,使用4-ATP有助于在乙腈水溶液中形成棒状胶束,这表明它们作为软模板的作用。此外,4-ATP还被用于在可控pH值下形成金和银的球形纳米粒子的异质组装。值得注意的是,类似的多功能染料分子俾斯麦棕R(BBR)在室温下可形成三角形和六边形金纳米板,而其他类似的染料分子只能得到任意形状的金纳米粒子。线性胺分子如十三胺在形状确定中的作用得到进一步证实,它对银和金都只能生成球形纳米粒子。本质上,我们的研究证实了各种此类有机分子在纳米粒子形状控制合成中的作用。我们还报告了其中一些纳米结构的光学和电化学性质与其形状的关系。

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