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Contour length fluctuations in polymer melts: A direct molecular proof

机译:聚合物熔体的轮廓长度波动:直接的分子证明

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摘要

In entangled polymer melts, contour length fluctuations are supposed to lift the chain confinement starting from the chain ends. Using neutron spin echo spectroscopy on polyethylene chains of intermediate length, where only the center part is labeled, allows us to separate the contribution of contour length fluctuations to the dynamic structure factor and thereby explicitly prove the effect on a molecular level. While a corresponding fully labeled chain shows the relaxation by contour length fluctuations additional to the primary relaxation, the data of the center-labeled chain, where the visibility of the fluctuations is switched off, is in excellent agreement with results for a nearly infinite long chain, where contour length fluctuations are known to be negligible.
机译:在缠结的聚合物熔体中,轮廓长度波动被认为从链端开始提升链约束。在仅标记中心部分的中等长度的聚乙烯链上使用中子自旋回波光谱法,使我们能够分离轮廓长度波动对动态结构因子的贡献,从而明确证明在分子水平上的影响。虽然相应的完全标记的链显示的是通过除初级松弛之外的轮廓长度波动引起的松弛,但是中心标记链的数据(其中波动的可见性已关闭)与几乎无限长链的结果非常吻合,其中轮廓长度波动已知可以忽略不计。

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