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首页> 外文期刊>Macromolecules >Melting Point and Solid-Liquid Coexistence Properties of alpha 1 Isotactic Polypropylene as Functions of Its Molar Mass: A Molecular Dynamics Study
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Melting Point and Solid-Liquid Coexistence Properties of alpha 1 Isotactic Polypropylene as Functions of Its Molar Mass: A Molecular Dynamics Study

机译:α1全同立构聚丙烯的熔点和固液共存特性与其摩尔质量的关系:分子动力学研究

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The melting point (T-m) of the alpha 1 form of isotactic polypropylene (iPP) as a function of its molar mass was studied with molecular dynamics (MD) simulations. The 11mer, 32mer, and 47mer systems were simulated, with the latter displaying a T-m representative of the long-chain polymer. Adopting a methodology developed in previous work, composite (sandwich) configurations consisting of both melt and crystal subdomains in contact with each other were generated, and T-m was determined as that temperature where none of the phases in the sandwich grew at the expense of the other. To deal with the sluggish dynamics of solidification and melting, a constraining potential that drives chains toward helical conformations was added to the Hamiltonian, solid liquid equilibration was achieved at high temperature in the presence of this, potential, and T-m was ultimately obtained through gradual removal of the constraining potential in single-phase solid and liquid simulations by Gibbs Duhem integration. The enthalpy difference Delta H-fus and entropy difference Delta S-fus between single-phase solid and liquid were obtained in the absence of the constraining potential. During the melting process the up down configuration of chains, the structure factor, the order parameter describing chain orientation relative to the c crystallographic axis, and motions characteristic of the rotator phase were studied along with the density and enthalpy.
机译:通过分子动力学(MD)模拟研究了α1形式的等规聚丙烯(iPP)的熔点(T-m)作为其摩尔质量的函数。模拟了11mer,32mer和47mer系统,后者显示了代表长链聚合物的T-m。采用先前工作中开发的方法,生成了由熔融和结晶子域相互接触组成的复合(三明治)构型,并将Tm确定为该温度,在该温度下,三明治中的任何一个相都没有生长,而又损失了另一个。为了应对凝固和熔化的呆滞动力学,将约束链驱动成螺旋构象的约束势被添加到哈密顿量,在存在该势的情况下,在高温下实现了固液平衡,并且通过逐步去除最终获得了Tm Gibbs Duhem积分在单相固体和液体模拟中的约束潜力。在没有约束电位的情况下,获得了单相固体和液体之间的焓差ΔH-fus和熵差ΔS-fus。在熔化过程中,研究了链的上下构型,结构因子,描述链相对于c结晶轴取向的有序参数以及旋转相的运动特性以及密度和焓。

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