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Ligand Engineering of Polymer Nanocomposites: From the Simple to the Complex

机译:聚合物纳米复合材料的配体工程:从简单到复杂

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摘要

One key to optimizing the performance of polymer nanocomposites for high-tech applications is surface ligand engineering of the nanofiller, which has been used to either tune the nanofiller morphology or introduce additional functionalities. Ligand engineering can be relatively simple such as a single population of short molecules on the nanoparticle surface designed for matrix compatibility. It can also have complexity that includes bimodal (or multimodal) populations of ligands that enable relatively independent control of enthalpic and entropic interactions between the nanofiller and matrix as well as introduce additional functionality and dynamic control. In this Spotlight on Applications, we provide a brief review into the use of brush ligands to tune the thermodynamic interactions between nanofiller and matrix and then focus on the potential for surface ligand engineering to create exciting nanocomposites properties for optoelectronic and dielectric applications.
机译:优化用于高科技应用的聚合物纳米复合材料性能的关键是纳米填料的表面配体工程设计,该工艺已用于调整纳米填料的形态或引入其他功能。配体工程可以相对简单,例如纳米粒子表面上的单个短分子种群设计用于基质相容性。它也可能具有复杂性,包括配体的双峰(或多峰)群体,这些配体能够相对独立地控制纳米填料和基质之间的焓和熵相互作用,并引入其他功能和动态控制。在本应用亮点中,我们简要介绍了刷状配体的使用,以调节纳米填料与基体之间的热力学相互作用,然后重点研究了表面配体工程的潜力,以创造出令人兴奋的光电和介电应用纳米复合材料特性。

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