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APS -APS March Meeting 2017 - Event - Quantifying the brush structure and assembly of mixed brush nanoparticles in solution

机译:APS -APS 2017年3月会议-活动-量化溶液中混合的刷子纳米颗粒的刷子结构和组装

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The arrangement of nanoparticles in a polymer melt or solution is critical to the resulting material properties. A common strategy to control the distribution of nanoparticles is to graft polymer chains onto the surface of the nanoparticles. An emerging strategy to further control the arrangement of nanoparticles is to graft polymer chains of different types and/or different lengths onto the surface of the nanoparticle, though this considerably increases the parameter space needed to describe the system. Theoretical models that are capable of predicting the assembly of nanoparticles in a melt or solution are thus desirable to guide experiments. In this talk, I will describe a recently developed non-equilibrium method that is appealing in its ability to tractably account for fluctuations and that can directly relate to experiments. To showcase the utility of this method, I apply it to mixed brush grafted nanoparticles in solution where fluctuations are prominent. Specifically, I investigate the role of experimentally relevant parameters on the structure of the brush and the corresponding effects on the assembly of the nanoparticles in solution. These results can be directly linked to experiments to help narrow the relevant parameter space for optimizing these materials.
机译:纳米粒子在聚合物熔体或溶液中的排列对于最终的材料性能至关重要。控制纳米颗粒分布的常用策略是将聚合物链接枝到纳米颗粒的表面上。进一步控制纳米颗粒排列的新兴策略是将不同类型和/或不同长度的聚合物链接枝到纳米颗粒的表面上,尽管这大大增加了描述系统所需的参数空间。因此,期望能够预测纳米颗粒在熔体或溶液中的组装的理论模型来指导实验。在本次演讲中,我将描述一种最近开发的非平衡方法,该方法吸引人的原因是可以轻松地考虑波动,并且可以直接与实验相关。为了展示此方法的实用性,我将其应用于波动明显的溶液中的混合刷接枝纳米颗粒。具体来说,我研究了实验相关参数在刷子结构上的作用以及对溶液中纳米颗粒组装的相应影响。这些结果可以直接与实验联系起来,以帮助缩小相关参数空间以优化这些材料。

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