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首页> 外文期刊>The Journal of Chemical Physics >Particle size-induced transition between surface segregation and bulk aggregation in a thin film of athermal polymer-nanoparticle blends
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Particle size-induced transition between surface segregation and bulk aggregation in a thin film of athermal polymer-nanoparticle blends

机译:粒径诱导的表面偏析与散装膜混合薄膜中的块状聚集的过渡

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Surface segregation and bulk aggregation in a thin film of athermal polymer-nanoparticle blends have been investigated by dissipative particle dynamics simulations. The thin film is confined between two athermal walls and the shape of the nanoparticles is spherical or cubic. Both phases are driven purely by the entropic effect, i.e., depletion attraction, which depends significantly on the nanoparticle size. At a specified particle volume fraction, surface segregation dominates for small nanoparticles but bulk aggregation emerges for large ones. The transition between the two phases is a result of the competition between particle-wall and particle-particle depletion attractions. The dominance of the former leads to surface segregation while the control of the latter results in bulk aggregation. Since nanocubes possess more contact areas and thus exhibit stronger depletion attractions than nanospheres do, the crossover from surface segregation to bulk aggregation occurs at smaller particle size for nanocubes.
机译:通过耗散粒子动力学模拟研究了薄膜薄膜中的表面偏析和块状聚集。薄膜限制在两个动脉壁之间,纳米颗粒的形状是球形或立方体。两相纯粹是通过熵效应驱动,即耗尽吸引力,这取决于纳米颗粒尺寸的显着依赖性。在特定的颗粒体积分数下,表面偏析占小纳米颗粒,但是大量的散装聚集。两相之间的过渡是粒子壁和颗粒颗粒耗尽景点之间的竞争。前者的主导地位导致表面偏析,而后者的控制导致散装聚集。由于纳米孔具有更多的接触区域并因此表现出比纳米球的较强的耗尽吸引力,因此从表面偏析到块状聚集的交叉发生在纳米尺寸的较小粒度下。

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