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首页> 外文期刊>The Journal of Chemical Physics >Monte Carlo and numerical self-consistent field study of end-tethered polymers in good solvent
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Monte Carlo and numerical self-consistent field study of end-tethered polymers in good solvent

机译:蒙特卡洛法和良好溶剂中末端连接的聚合物的数值自洽场研究

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摘要

We present a Monte Carlo (MC) and numerical self-consistent field (NSCF) study of end-tethered polymers in good solvent, for surface coverages found in most experiments. Properties of the system, including the layer thickness, are calculated as functions of the degree of polymerization and surface density of the chains. A lower limit on the range of surface coverage above which the NSCF approach agrees well with the MC simulations is identified. Both approaches indicate that chain stretching begins at very low coverage, but that it remains modest throughout the regime of interest. The layer thickness does not scale linearly with degree of polymerization, and the radius of gyration of a free polymer in solution remains a relevant length scale. The MC and NSCF results are in good agreement with experiment.
机译:对于大多数实验中发现的表面覆盖率,我们提供了一种在良好溶剂中的末端连接聚合物的蒙特卡洛(MC)和数值自洽场(NSCF)研究。计算系统的性能(包括层厚度)作为聚合度和链表面密度的函数。确定了表面覆盖范围的下限,高于该范围的NSCF方法与MC模拟吻合得很好。两种方法都表明,链条拉伸从非常低的覆盖率开始,但是在整个感兴趣的方案中它仍然保持适度。层厚度不随聚合度线性地缩放,并且溶液中游离聚合物的回转半径保持相关的长度比例。 MC和NSCF结果与实验吻合良好。

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