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Curvature effects upon interactions of polymer-grafted nanoparticles in chemically identical polymer matrices

机译:曲率对化学上相同的聚合物基质中聚合物接枝的纳米颗粒相互作用的影响

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摘要

We study the interactions between polymer-grafted nanoparticles immersed in a chemically identical polymer melt using a numerical implementation of polymer mean-field theory. We focus on the interpenetration width between the grafted and free chains and its relationship to the polymer-mediated interparticle interactions. To this end, we quantify the interpenetration width as a function of particle curvature, grafting density, and the relative molecular weights of the grafted and free chains. We show the onset of wetting and dewetting as a function of these quantities and explain our results through simple scaling arguments to include the effects of curvature. Subsequently, we show that the interparticle potentials correlate quantitatively with the trends displayed by the interpenetration widths.
机译:我们使用聚合物平均场理论的数值实现方法研究了浸入化学上相同的聚合物熔体中的聚合物接枝纳米颗粒之间的相互作用。我们专注于接枝和自由链之间的互穿宽度及其与聚合物介导的粒子间相互作用的关系。为此,我们将互穿宽度量化为颗粒曲率,接枝密度以及接枝和自由链的相对分子量的函数。我们根据这些量显示润湿和反润湿的开始,并通过简单的缩放参数(包括曲率的影响)来解释我们的结果。随后,我们表明粒子间的电势与互穿宽度显示的趋势定量相关。

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