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Morphological Investigations of Organic/Inorganic Nanocomposites Fabricated to Achieve Controlled Dispersion at High Loadings

机译:制造有机/无机纳米复合材料的形态学研究,以在高负荷下实现控制分散

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摘要

Realization of property enhancements inherent to the presence of nanoparticles continues to be a challenge for the production of bulk nanocomposite materials with commercially available techniques. This study combines twin-screw compounding with surface modification of SiO_2 nanoparticles to enable targeted dispersion in a SEBS block copolymer. Production of these composites with high levels of well-dispersed particulates aims to leverage aggregation for production of hierarchical structure. The aggregation state of the particles as well as the level of order in the block copolymer morphology was determined through USAXS and TEM. Particles coated with ligands miscible with the end-blocks of the BCP (minority component) increased dispersion at all loading levels observed up to 10 vol%. Ligands employed to increase miscibility of the nanoparticle with the mid-block (majority component) resulted in large aggregates for all loadings without disturbance of the BCP morphology.
机译:实现纳米粒子存在固有的性质增强仍然是具有市售技术的块状纳米复合材料的挑战。该研究将双螺杆复合与SiO_2纳米颗粒的表面改性结合起来,使靶向分散在SEBS嵌段共聚物中。生产具有高水平分散的颗粒的这些复合材料旨在利用用于生产分层结构的聚集。通过USAX和TEM测定颗粒的聚集状态以及嵌段共聚物形态中的顺序水平。涂有与BCP(少数群体组分)的端嵌段混溶的配体涂有配体的颗粒在所有加载水平的分散体中观察到高达10体积%。用于增加纳米粒子的混合物与中间嵌段(大多数组分)的混合物导致所有载荷的大聚集体,而不会干扰BCP形态。

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