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Conformations of a Long Polymer in a Melt of ShorterChains: Generalizations of the Flory Theorem

机译:较短熔体中长聚合物的构型链:弗洛里定理的推广

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摘要

Large-scale simulations of the swelling of a long N-mer in a melt of chemically identical P-mers are used to investigate a discrepancy between theory and experiments. Classical theory predicts an increase of probe chain size R ∼ P–0.18 with decreasing degree of polymerization P of melt chains in the range of 1 < P < N1/2. However, both experiment and simulation data are more consistent with an apparently slower swelling R ∼ P–0.1 over a wider range of melt degrees of polymerization. This anomaly is explained by taking into account the recently discovered long-range bond correlations in polymer melts and corrections to excluded volume. We generalize the Flory theorem and demonstrate that it is in excellent agreement with experiments and simulations.
机译:化学上相同的P-mer熔体中长N-mer溶胀的大规模模拟用于研究理论与实验之间的差异。经典理论预测,随着熔体链聚合度P在1

1/2 范围内降低,探针链尺寸R〜P -0.18 会增加。但是,实验和模拟数据都与在较宽的聚合熔体度范围内的溶胀R〜P -0.1 较一致。通过考虑最近发现的聚合物熔体中的长程键相关性和对排除体积的校正,可以解释这种异常情况。我们推广了弗洛里定理,并证明它与实验和模拟非常吻合。

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