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MOLECULAR DYNAMICS SIMULATIONS OF ATHERMAL POLYMER BLENDS - FINITE SYSTEM SIZE CONSIDERATIONS

机译:高分子聚合物共混物的分子动力学模拟-有限系统尺寸的考虑

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Molecular dynamics simulations of binary, athermal blends of chains consisting of 50 tangent sites were carried out over a range of compositions at liquidlike packing fractions. The sites interact with repulsive Lennard-Jones potentials and have effective hard sphere diameters of approximately 1.0 and 1.2 for the two site types. The intrachain and interchain correlation functions were found and, except for the single component systems, the interchain correlations were seen to de strongly dependent on system size. Trivial, long range correlations due to the finite system size can be approximated from simple physical arguments, and the coarse, interchain, radial distribution functions can be ''corrected'' for these effects. The resulting correlation functions are seen to behave at large separation as would be expected of interchain radial distribution functions in an infinite sized system, permitting meaningful comparisons with the predictions of liquid state theory. (C) 1995 American Institute of Physics. [References: 36]
机译:在由液态组成的填充组分组成的一系列组合物中,对由50个切线位点组成的二元链,无热链的分子动力学模拟进行了模拟。这些位点与排斥的Lennard-Jones势相互作用,并且对于这两种位点类型,其有效硬球直径分别约为1.0和1.2。发现了链内和链间相关函数,除单组件系统外,链间相关性强烈依赖于系统大小。可以通过简单的物理参数来估算由于系统大小有限而引起的微不足道的长期相关性,并且可以针对这些影响“校正”粗略的链间径向分布函数。正如在无限大小的系统中所期望的,链间径向分布函数所期望的那样,所产生的相关函数表现出较大的间隔,从而可以与液态理论的预测进行有意义的比较。 (C)1995年美国物理研究所。 [参考:36]

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