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首页> 外文期刊>The Journal of Chemical Physics >Phase behaviors of dendrimer/solvent systems: Molecular thermodynamics approach
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Phase behaviors of dendrimer/solvent systems: Molecular thermodynamics approach

机译:树枝状大分子/溶剂体系的相行为:分子热力学方法

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We investigate vapor-liquid equilibria of dendrimer/solvent (benzyl ether dendrimer/toluene) systems by the combination of incompressible lattice cluster theory and atomistic simulation technique. We also examine the structure effect of dendritic polymer and the specific interaction due to the difference of interaction energies of endgroup at the periphery of dendrimer molecules. The interaction energy parameters are obtained by the pairs method including Monte Carlo simulation technique with excluded volume constraint. It the pairs method, we do not simulate the whole molecule as in molecular dynamics or molecular mechanics, but only monomer segments interacting with solvent molecules. In general, those parameters are determined by fitting experimental data. Our results show that the specific interactions between the endgroup and the solvent molecule play an important role in determining phase behaviors of the given systems.
机译:我们结合不可压缩的晶格簇理论和原子模拟技术研究了树枝状大分子/溶剂(苄基醚树枝状大分子/甲苯)系统的气液平衡。我们还检查了树枝状聚合物的结构效应和由于树枝状聚合物分子周边端基的相互作用能的不同而引起的特定相互作用。相互作用能参数是通过包括蒙特卡罗模拟技术在内的成对方法获得的,并排除了体积限制。在成对方法中,我们不像分子动力学或分子力学那样模拟整个分子,而仅模拟与溶剂分子相互作用的单体链段。通常,这些参数是通过拟合实验数据确定的。我们的结果表明,端基和溶剂分子之间的特定相互作用在确定给定系统的相行为方面起着重要作用。

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