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首页> 外文期刊>The Journal of Chemical Physics >Dynamics in coarse-grained models for oligomer-grafted silica nanoparticles
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Dynamics in coarse-grained models for oligomer-grafted silica nanoparticles

机译:低聚物接枝二氧化硅纳米粒子的粗粒模型动力学

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Coarse-grained models of poly(ethylene oxide) oligomer-grafted nanoparticles are established by matching their structural distribution functions to atomistic simulation data. Coarse-grained force fields for bulk oligomer chains show excellent transferability with respect to chain lengths and temperature, but structure and dynamics of grafted nanoparticle systems exhibit a strong dependence on the core-core interactions. This leads to poor transferability of the core potential to conditions different from the state point at which the potential was optimized. Remarkably, coarse graining of grafted nanoparticles can either accelerate or slowdown the core motions, depending on the length of the grafted chains. This stands in sharp contrast to linear polymer systems, for which coarse graining always accelerates the dynamics. Diffusivity data suggest that the grafting topology is one cause of slower motions of the cores for short-chain oligomer-grafted nanoparticles; an estimation based on transition-state theory shows the coarse-grained core-core potential also has a slowing-down effect on the nanoparticle organic hybrid materials motions; both effects diminish as grafted chains become longer.
机译:通过将聚环氧乙烷低聚物接枝的纳米颗粒的粗粒模型通过将其结构分布函数与原子模拟数据进行匹配来建立。本体低聚物链的粗粒度力场显示出相对于链长和温度的出色转移能力,但接枝纳米粒子系统的结构和动力学表现出对核-核相互作用的强烈依赖性。这导致核心电势在与电势被优化的状态点不同的条件下的可传递性差。值得注意的是,取决于接枝链的长度,接枝纳米颗粒的粗粒化可能会加速或减慢核心运动。这与线性聚合物体系形成鲜明对比,线性聚合物体系的粗粒化总是加速动力学。扩散数据表明,接枝拓扑是短链低聚物接枝纳米颗粒核运动慢的原因之一。基于过渡态理论的估计表明,粗颗粒核-核电势也对纳米颗粒有机杂化材料的运动具有减慢作用;随着嫁接链变长,两种作用均减弱。

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