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通过蒙特卡罗模拟研究分子瓶刷的尺寸和持久长度

Size and persistence length of molecular bottle-brushes by Monte Carlo simulations.

作者信息

Elli Stefano, Ganazzoli Fabio, Timoshenko Edward G, Kuznetsov Yuri A, Connolly Ronan

机构信息

Dipartimento di Chimica, Materiali e Ingegneria Chimica "G. Natta", Sez. Chimica, Politecnico di Milano, via L. Mancinelli 7, 20131 Milano, Italy.

出版信息

J Chem Phys. 2004 Apr 1;120(13):6257-67. doi: 10.1063/1.1651052.

Abstract

Single-chain simulations of densely branched comb polymers, or "molecular bottle-brushes" with side-chains attached to every (or every second) backbone monomer, were carried out by off-lattice Monte Carlo technique. A coarse-grained model, described by hard spheres connected by harmonic springs, was employed. Backbone lengths of up to 100 units were considered, and compared with the corresponding linear chains. The backbone molecular size was investigated as a function of its length at fixed arm size, and as a function of the arm size at fixed backbone length. The apparent swelling exponents obtained by a power-law fit were found to be larger than those for the corresponding linear polymers, indicative of stiffening of the comb backbone. The probability distribution function for the backbone end-to-end distance was also investigated for different backbone lengths and arm sizes. Analysis of this function yielded the critical exponents, which revealed an increase in the swelling exponent consistent with values found from the molecular size. The apparent persistence length of the backbone was also determined, and was found to increase with increasing branching density. Finally, the static structure factors of the whole bottle-brushes and of their backbones are discussed, which provides another consistent estimate of the swelling exponents.

摘要

采用非格点蒙特卡罗技术对密集支化梳状聚合物,即“分子刷”(侧链连接到每个(或每隔一个)主链单体)进行了单链模拟。采用了一种由通过谐振弹簧连接的硬球描述的粗粒化模型。考虑了长达100个单元的主链长度,并与相应的线性链进行了比较。在固定臂尺寸的情况下,研究了主链分子尺寸与其长度的函数关系;在固定主链长度的情况下,研究了主链分子尺寸与臂尺寸的函数关系。通过幂律拟合得到的表观溶胀指数大于相应线性聚合物的表观溶胀指数,这表明梳状主链变硬。还研究了不同主链长度和臂尺寸下主链端到端距离的概率分布函数。对该函数的分析得出了临界指数,结果表明溶胀指数增加,这与从分子尺寸得到的值一致。还确定了主链的表观持久长度,发现其随着支化密度的增加而增加。最后,讨论了整个分子刷及其主链的静态结构因子,这提供了另一种对溶胀指数的一致估计。

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