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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Construction of polydisperse polymer model and investigation of heat conduction: A molecular dynamics study of linear and branched polyethylenimine
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Construction of polydisperse polymer model and investigation of heat conduction: A molecular dynamics study of linear and branched polyethylenimine

机译:多分散聚合物模型的构建及热传导调查:线性和支链聚乙烯亚胺的分子动力学研究

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摘要

Molecular dynamics (MD) simulation is a powerful tool for investigating the molecular mechanism of heat conduction in polymers. However, existing MD studies are mostly on monodisperse polymers and the effect of polydispersity, which typically occurs in commercial polymers, remains to be clarified. In this work, various types of polydisperse polyethylenimine (PEI) composed of molecules having different molecular weights and branching structures were constructed by in silico step-growth polymerization. The effect of the polydispersity and molecular structure on heat conduction in PEI was investigated using all-atom MD simulations. The number and weight fraction distributions of the polydisperse purely-linear PEI agreed well with the Flory-Schulz distributions, and therefore it can be concluded that the in silico polymerization used in this work reasonably mimics the step-growth-like polymerization observed in the actual synthesis of PEI. Thermal conductivity increased with increase in the radius of gyration dependent on the degree of branching of the molecules. In addition, thermal conductivity of a polydisperse PEI exhibited a similar value to that of a monodisperse PEI of a representative polymer chain in the polydisperse system. By analyzing in detail the thermal energy transfer among and inside molecules, their microscopic mechanisms could be understood and it was discovered that the average molecular weight is a critical factor in determining heat conduction.
机译:分子动力学(MD)模拟是一种强大的工具,用于研究聚合物中的热传导的分子机制。然而,现有的MD研究主要是在单分散聚合物上,并且通常在商业聚合物中发生的多分散性的影响仍然澄清。在这项工作中,通过硅步进生长聚合构建由具有不同分子量和支化结构的分子组成的各种类型的多分散聚乙烯亚胺(PEI)。使用全原子MD模拟研究了多分散性和分子结构对PEI中的热传导的影响。多分散纯线性PEI的数量和重量分布良好地与绒毛 - 舒氏分布吻合良好,因此可以得出结论,在该工作中使用的硅聚合合理地模拟了实际观察到的阶梯生长的聚合合成PEI。导热率随着循环的增加而增加,依赖于分子的分支程度。此外,多分散PEI的导热率表现出与多分散系统中代表性聚合物链的单分散PEI相似的值。通过详细分析,可以理解其微观机制和内部分子中的热能传递,并且发现平均分子量是确定导热的临界因子。

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