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Single polymer mechanics across the force regimes

机译:跨力态的单一聚合物力学

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I review theoretical and experimental results on the force-extension response of single polymers, with a focus on scaling pictures of low-force elastic regimes, and recent measurements of synthetic and biological chains that explore those regimes. The mechanical response of single polymers is an old theoretical problem whose exploration was instigated by the curious thermomechanical behavior of rubber. Up until the 1990s, the main utility of those calculations was to explain bulk material mechanics. However, in that decade, it became possible to directly test the calculations through high-precision single-chain stretching experiments (i.e., force spectroscopy). I present five major single-chain elasticity models, including scaling results based on blob-chain models, along with analytic results based on linear response theory, and those based on freely jointed chain or worm-like chain structure. Each model is discussed in terms of the regime of force for which it holds, along with the status of its rigorous assessment with experiment. Finally, I show how the experiments can provide new insight into polymer structure itself, with particular emphasis on polyelectrolytes. (C) 2015 AIP Publishing LLC.
机译:我回顾了有关单一聚合物的力-延伸响应的理论和实验结果,重点关注了低力弹性状态的缩放图,以及对探索这些状态的合成链和生物链的最新测量。单一聚合物的机械响应是一个古老的理论问题,其探索是由橡胶的奇特热力学行为引起的。直到1990年代,这些计算的主要用途是解释散装材料力学。然而,在那十年中,通过高精度单链拉伸实验(即力谱)直接测试了计算成为可能。我介绍了五个主要的单链弹性模型,包括基于斑点链模型的缩放结果,基于线性响应理论的分析结果以及基于自由连接链或蠕虫状链结构的分析结果。每个模型都根据其持有的使用力范围以及经过严格评估的状态进行了讨论。最后,我展示了实验如何能够提供对聚合物结构本身的新见解,特别是在聚电解质方面。 (C)2015 AIP Publishing LLC。

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