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Controlled Assembly of Gold and Silver Nanoparticles Using Thermotropic Amphiphilic and Conventional Liquid Crystals

机译:使用热致吡硅和常规液晶控制金和银纳米颗粒的组装

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The optical and thermal properties of liquid crystalline (LC) nanocomposites, amphiphilic or conventional rod-like liquid crystals with suspended thiolate-protected metal nanoparticles, have been studied. Three different types of liquid crystals have been used, namely amphiphilic, bolaamphiphilic as well as conventional rod-like liquid crystals. Dispersion of thiolate-protected gold and silver nanoparticles produces LC nanocomposites with either increased (hydrophilic particles) or decreased LC phase stability with increasing particle content. Based on these observations we predict several structural models for the organizations of the immersed particles within the organized, yet fluid liquid crystalline supramolecular assemblies arising from microphase segregation effects of incompatible structural sub-units.
机译:研究了液晶(LC)纳米复合材料,两亲物质或常规棒状液晶的光学和热性能,具有悬浮的硫醇保护的金属纳米颗粒。已经使用了三种不同类型的液晶,即两亲型,Bolaamphilic以及常规的棒状液晶。硫醇保护的金和银纳米粒子的分散体产生LC纳米复合材料,其具有增加(亲水颗粒)或随着颗粒含量的增加而降低的LC相位稳定性。基于这些观察结果,我们预测了由不相容的结构子单元的微相隔离效应产生的有组织的液晶超分子组合物中的浸渍颗粒的组织的若干结构模型。

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