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Macroscopic alignment of nanoparticle arrays in soft crystals of cubic and cylindrical polymer micelles

机译:立方和圆柱状聚合物微团的软晶体中纳米粒子阵列的宏观排列

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摘要

We describe a method to organize nanometer-sized hydrophilic particles into ordered arrays by templating them in the soft, micelle-crystal phases (spherical and cylindrical) of a thermoreversible block copolymer. Small-angle neutron scattering (SANS) with contrast variation is used to show that the dispersed particles (in this case, proteins or silica) form structured arrays by being constrained in the interstitial cavities between the polymer micelles in the ordered micelle crystal. Simple shear is used to macroscopically align both phases of the nanocomposites (micelles and particles) into macro-domains. The temperature-induced order-order transition between templates of spherical and cylindrical micelles is demonstrated as a reversible technique to modify the structure of the templated nanoparticle arrays.
机译:我们描述了一种通过在热可逆嵌段共聚物的软胶束晶体相(球形和圆柱形)中进行模板化来将纳米级亲水性颗粒组织成有序阵列的方法。具有对比度变化的小角度中子散射(SANS)用于显示分散的粒子(在这种情况下为蛋白质或二氧化硅)受约束在有序胶束晶体中的聚合物胶束之间的空隙中而形成结构化阵列。简单剪切可用于将纳米复合材料的两个相(胶束和颗粒)宏观对齐到宏观区域。球形和圆柱形胶束的模板之间的温度诱导的顺序-顺序过渡被证明是可逆技术,用于修改模板化的纳米粒子阵列的结构。

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