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通过介晶配体结构控制金纳米颗粒超晶格性质。

Control of gold nanoparticle superlattice properties via mesogenic ligand architecture.

机构信息

Pasteura 1, Faculty of Chemistry, University of Warsaw, Warsaw, Poland.

出版信息

Langmuir. 2013 Mar 12;29(10):3404-10. doi: 10.1021/la3043236. Epub 2013 Feb 26.

Abstract

Hybrid structures made of metal nanoparticles with liquid crystalline coating attract considerable attention due to their conspicuous self-assembly and potential synergistic properties. Here we report on a new structural parameter that can be used to control the formation of hybrid gold nanoparticles superlattice. A series of Au nanoclusters covered with mixed monolayers of alkyl and liquid-crystalline ligands were obtained. For the first time in such systems the lengths of both alkyl ligands and mercapto-functionalized alkyl spacers of the promesogenic molecules were varied. The physicochemical properties of the obtained materials were investigated by different instrumental techniques, such as X-ray photoelectron spectroscopy (XPS), small-angle X-ray diffraction (SAXRD), and transmission electron microscopy (TEM). Interestingly, the applied variations of the grafting layer composition enabled the formation of 1D (lamellar) and 3D long-range ordered structures with systematically changing thermal stability range. Such behavior is explained based on the structural parameters of the hybrid nanoparticles, namely the separation of the cores and ligand flexibility. This work gives some new insights into the nanoparticle self-assembly subject and points out the critical parameters controlling the degree of order within the self-assembled superstructures.

摘要

由于具有明显的自组装和潜在的协同特性,由带有液晶涂层的金属纳米粒子组成的混合结构引起了相当大的关注。在这里,我们报告了一个新的结构参数,可用于控制混合金纳米粒子超晶格的形成。我们获得了一系列带有混合单层烷基和液晶配体的 Au 纳米团簇。在这样的系统中,首次改变了前导分子的烷基配体和巯基官能化的烷基间隔物的长度。通过各种仪器技术(例如 X 射线光电子能谱(XPS)、小角 X 射线衍射(SAXRD)和透射电子显微镜(TEM))研究了所得材料的物理化学性质。有趣的是,所施加的接枝层组成的变化能够形成具有系统变化的热稳定性范围的 1D(层状)和 3D 长程有序结构。这种行为是基于混合纳米粒子的结构参数解释的,即核心的分离和配体的灵活性。这项工作为纳米粒子自组装主题提供了一些新的见解,并指出了控制自组装超结构中有序程度的关键参数。

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