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沿弹性丝离散结合的转变和包裹介导相互作用的包裹:精确解。

Wrapping transition and wrapping-mediated interactions for discrete binding along an elastic filament: an exact solution.

机构信息

Université de Bordeaux and CNRS, Laboratoire Ondes et Matière d'Aquitaine, UMR 5798, F-33400 Talence, France.

出版信息

J Chem Phys. 2012 Oct 14;137(14):144904. doi: 10.1063/1.4757392.

Abstract

The wrapping equilibria of one and two adsorbing cylinders are studied along a semi-flexible filament (polymer) due to the interplay between elastic rigidity and short-range adhesive energy between the cylinder and the filament. We show that statistical mechanics of the system can be solved exactly using a path integral formalism which gives access to the full effect of thermal fluctuations, going thus beyond the usual Gaussian approximations which take into account only the contributions from the minimal energy configuration and small fluctuations about this minimal energy solution. We obtain the free energy of the wrapping-unwrapping transition of the filament around the cylinders as well as the effective interaction between two wrapped cylinders due to thermal fluctuations of the elastic filament. A change of entropy due to wrapping of the filament around the adsorbing cylinders as they move closer together is identified as an additional source of interactions between them. Such entropic wrapping effects should be distinguished from the usual entropic configuration effects in semi-flexible polymers. Our results may be relevant to the problem of adsorption of oriented nano-rods on semi-flexible polymers.

摘要

由于弹性刚度和圆柱与纤维之间的短程粘附能之间的相互作用,研究了一个和两个吸附圆柱的包裹平衡。我们表明,可以使用路径积分形式来精确求解系统的统计力学,这使得可以完全考虑热涨落的影响,从而超越了通常的仅考虑最小能量构型和该最小能量解附近小涨落的高斯近似。我们得到了纤维在圆柱周围包裹-解包裹转变的自由能,以及由于弹性纤维的热涨落,两个包裹圆柱之间的有效相互作用。当吸附圆柱相互靠近时,纤维围绕它们的缠绕引起的熵的变化被确定为它们之间相互作用的另一个来源。这种有包裹的熵效应应该与半柔性聚合物中的常见熵构型效应区分开来。我们的结果可能与取向纳米棒在半柔性聚合物上的吸附问题有关。

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