Networks of helix-forming polymers

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作者
S. Kutter
E.M. Terentjev
机构
[1] Cavendish Laboratory,
[2] University of Cambridge,undefined
[3] Madingley Road,undefined
[4] Cambridge CB3 0HE,undefined
[5] UK,undefined
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PACS. 78.20.Ek Optical activity – 83.80.Va Elastomeric polymers – 87.15.La Mechanical properties;
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摘要
Biological molecules can form hydrogen bonds between nearby residues, leading to helical secondary structures. The associated reduction of configurational entropy leads to a temperature dependence of this effect: the helix-coil transition. Since the formation of helices implies a dramatic shortening of the polymer dimensions, an externally imposed end-to-end distance R affects the equilibrium helical fraction of the polymer and the resulting force-extension curves show anomalous plateau regimes. In this article, we investigate the behaviour of a crosslinked network of such helicogenic molecules, particularly focusing on the coupling of the (average) helical content present in a network to the externally imposed strain. We show that both elongation and compression can lead to an increase in helical domains under appropriate conditions.
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页码:539 / 547
页数:8
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