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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Thermodynamic consistency in the structure-based integral equation coarse-grained method
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Thermodynamic consistency in the structure-based integral equation coarse-grained method

机译:基于结构的整体方程粗粒法的热力学稠度

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摘要

The Integral Equation Coarse-Grained method is an approach that simplifies the representation of a polymer melt into a liquid of coarse-grained chains, considerably speeding up the computation of the melt properties, while reproducing with accuracy structure and thermodynamics of the corresponding atomistic description. In a recent paper [Polymer 111, 103 (2017)], it was stated that the structure-based Integral Equation Coarse-Grained approach does not give thermodynamic consistency. Here we present new calculations that confirm the validity of this method in predicting consistent pressure and radial distribution functions with atomistic simulations. Other details of the method are also discussed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:整体方程粗粒化方法是一种方法,其简化了聚合物熔体到粗粒链的液体中的表示,显着加速了熔体特性的计算,同时以相应的原子描述的精度结构和热力学再现。 在最近的纸张中[聚合物111,103(2017(2017)]据据说,基于结构的整体方程粗粒化方法不给出热力学稠度。 在这里,我们提出了新的计算,以确认该方法的有效性在预测具有原子模拟的一致压力和径向分布函数时。 还讨论了该方法的其他细节。 (c)2017 Elsevier Ltd.保留所有权利。

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