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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >The structure of poly(ethylene oxide) liquids:comparison of integral equation theory with molecular dynamics simulations and neutron scattering
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The structure of poly(ethylene oxide) liquids:comparison of integral equation theory with molecular dynamics simulations and neutron scattering

机译:聚环氧乙烷液体的结构:积分方程理论与分子动力学模拟和中子散射的比较

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摘要

Polymer reference interaction site model (PRISM) calculations and molecular dynamics (MD) simulations were carried out on poly(ethylene oxide) liquids using a force field of Smith,Jaffe,and Yoon.The intermolecular pair correlation functions and radius of gyration from theory were in very good agreement with MD simulations when the partial charges were turned off.When the charges were turned on,considerably more structure was seen in the intermolecular correlations obtained from MD simulation.Moreover,the radius of gyration increased by 38% due to electrostatic repulsions along the chain backbone.Because the partial charges greatly affect the structure,significant differences were seen between the PRISM calculations (without charges) and the wide angle neutron scattering measurements of Annis and coworkers for the total structure factor,and the hydrogen/hydrogen intermolecular correlation function.This is in contrast to previous PRISM calculations on poly (dimethyl siloxane).
机译:利用Smith,Jaffe和Yoon的力场,在聚环氧乙烷液体上进行了聚合物参考相互作用位点模型(PRISM)的计算和分子动力学(MD)模拟。分子间对相关函数和理论上的回转半径分别为当关闭部分电荷时,与MD模拟非常吻合。当打开电荷时,从MD模拟获得的分子间相关性中可以看到更多的结构。此外,由于静电排斥,旋转半径增加了38%由于部分电荷极大地影响了结构,因此PRISM计算(不带电荷)与Annis和同事的广角中子散射测量的总结构因子以及氢/氢分子间相关性之间存在显着差异与以前的PRISM对聚二甲基硅氧烷的计算相反。

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