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The Structure of Star-Branched Chains in a Confined Space

机译:密闭空间中星形分支链的结构

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We studied the properties of a simplified model of star-branched polymers confined in a slit formed by two parallel and impenetrable surfaces.The chains were built of identical united atoms(segments)whose positions were restricted to vertices of a simple cubic lattice.The polymer excluded volume and polymer segment-surface contact interactions were also introduced into the model.The properties of the model chains were determined by means of Monte Carlo simulations with a Metropolis-type sampling algorithm based on local changes of chain's conformation.The structure of star-branched chains was investigated and the influence of the confinement and the temperature on the chain dimensions and structure was studied.It was shown that for chains in the adsorbing slits their sizes do not exhibit a universal behavior contrary to confined athermal polymers.The polymers in narrow slits at higher temperatures still exhibited features of a three-dimensional chain.It was also shown that chains in small slits and at low temperatures were fully adsorbed at one of the surfaces but could also switch the surface rapidly.
机译:我们研究了一个简化的星形支化聚合物模型的性质,该模型被限制在两个平行且不可穿透的表面形成的狭缝中。链是由相同的统一原子(段)构建的,其位置仅限于简单立方晶格的顶点。排除的体积和聚合物链段与表面之间的相互作用也引入到模型中。模型链的特性是通过蒙特卡罗模拟,Metropolis型采样算法基于链构象的局部变化来确定的。对支链进行了研究,研究了限制条件和温度对链尺寸和结构的影响,结果表明,对于吸附狭缝中的链,其尺寸没有表现出与受限无热聚合物相反的普遍行为。高温下的狭缝仍然表现出三维链的特征。所有狭缝和低温下的表面均被完全吸附,但也可能迅速切换表面。

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