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Phase transitions of a single polymer chain: A Wang-Landau simulation study

机译:单个聚合物链的相变:Wang-Landau模拟研究

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A single flexible homopolymer chain can assume a variety of conformations which can be broadly classified as expanded coil, collapsed globule, and compact crystallite. Here we study transitions between these conformational states for an interaction-site polymer chain comprised of N=128 square-well-sphere monomers with hard-sphere diameter σ and square-well diameter λσ. Wang—Landau sampling with bond-rebridging Monte Carlo moves is used to compute the density of states for this chain and both canonical and microcanonical analyses are used to identify and characterize phase transitions in this finite size system. The temperature-interaction range (i.e., T-λ) phase diagram is constructed forλ≤ 1.30. Chains assume an expanded coil conformation at high temperatures and a crystallite structure at low temperatures. For λ > 1.06 these two states are separated by an intervening collapsed globule phase and thus, with decreasing temperature a chain undergoes a continuous coil-globule (collapse) transition followed by a discontinuous globule-crystal (freezing) transition. For well diameters λ < 1.06 the collapse transition is pre-empted by the freezing transition and thus there is a direct first-order coil-crystal phase transition. These results confirm the recent prediction, based on a lattice polymer model, that a collapsed globule state is unstable with respect to a solid phase for flexible polymers with sufficiently short-range monomer-monomer interactions.
机译:一条柔性均聚物链可以具有多种构象,这些构象可以大致分为膨胀螺旋,塌缩小球和致密微晶。在这里,我们研究由N = 128个具有硬球直径σ和方孔直径λσ的方孔球单体组成的相互作用部位聚合物链在这些构象状态之间的过渡。 Wang-Landau采样使用键重新结合的蒙特卡洛运动来计算该链的状态密度,并且规范分析和微规范分析都用于识别和表征此有限大小系统中的相变。温度相互作用范围(即T-λ)相图是针对λ≤1.30构造的。链在高温下呈现扩张的线圈构象,在低温下呈现微晶结构。当λ> 1.06时,这两个状态被中间的塌陷球状相隔开,因此,随着温度的降低,一条链会经历连续的盘状小球(塌陷)转变,然后发生不连续的球状结晶(冻结)转变。对于井径λ<1.06,塌陷转变被冻结转变所取代,因此存在直接的一阶线圈晶体相变。这些结果证实了基于晶格聚合物模型的最新预测,即对于具有足够短程单体-单体相互作用的柔性聚合物,坍塌的球状状态相对于固相而言是不稳定的。

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