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通过有机接枝层的组成控制液晶纳米颗粒的空间组织

Controlling the Spatial Organization of Liquid Crystalline Nanoparticles by Composition of the Organic Grafting Layer.

作者信息

Wójcik Michał M, Olesińska Magdalena, Sawczyk Michał, Mieczkowski Józef, Górecka Ewa

机构信息

Faculty of Chemistry, University of Warsaw, Pasteura 1, 02-093 Warsaw (Poland).

出版信息

Chemistry. 2015 Jul 6;21(28):10082-8. doi: 10.1002/chem.201406262. Epub 2015 Jun 2.

Abstract

Understanding how the spatial ordering of liquid crystalline nanoparticles can be controlled by different factors is of great importance in the further development of their photonic applications. In this paper, we report a new key parameter to control the mesogenic behavior of gold nanoparticles modified by rodlike thiols. An efficient method to control the spatial arrangement of hybrid nanoparticles in a condensed state is developed by changing the composition of the mesogenic grafting layer on the surface of the nanoparticles. The composition can be tuned by different conditions of the ligand exchange reaction. The thermal and optical behavior of the mesogenic and promesogenic ligands were investigated by using differential scanning calorimetry (DSC) and hot-stage polarized optical microscopy. The chemical structure of the synthesized hybrid nanoparticles was characterized by (1) H NMR spectroscopy, thermogravimetric analysis (TGA), XPS, and elemental analysis, whereas the superstructures were examined by small-angle X-ray diffraction (SAXSRD) analysis. Structural studies showed that the organic sublayer made of mesogenic ligands is denser with an increasing the average ligand number, thereby separating the nanoparticles in the liquid crystalline phases, which changes the parameters of these phases.

摘要

了解液晶纳米颗粒的空间排列如何受不同因素控制,对于其光子应用的进一步发展至关重要。在本文中,我们报告了一个控制由棒状硫醇修饰的金纳米颗粒介晶行为的新关键参数。通过改变纳米颗粒表面介晶接枝层的组成,开发了一种在凝聚态下控制杂化纳米颗粒空间排列的有效方法。该组成可通过配体交换反应的不同条件进行调节。利用差示扫描量热法(DSC)和热台偏振光学显微镜研究了介晶和前介晶配体的热行为和光学行为。通过¹H NMR光谱、热重分析(TGA)、XPS和元素分析对合成的杂化纳米颗粒的化学结构进行了表征,而通过小角X射线衍射(SAXSRD)分析对超结构进行了研究。结构研究表明,由介晶配体构成的有机子层随着平均配体数的增加而更致密,从而在液晶相中分离纳米颗粒,这改变了这些相的参数。

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