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Conformation and segmental mobility of a diluted single polymer chain simulated with bond fluctuation model

机译:用键波动模型模拟稀释的单聚合物链的构象和链节迁移率

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摘要

The conformation of a single long polymer chain has been modelled using the Bond Fluctuation Model. The interaction between non-bonded segments has been introduced in the model by means of a Lennard-Jones potential while two energy potentials depending on bond length and bond angle took into account intramolecular interactions. The effect on chain configuration of varying bond angle potential, which tends to extend the polymer chain, was studied. The chain was allowed to equilibrate at high temperature, adopting a random coil conformation. When the system was subjected to a cooling ramp, its energy and dynamically accessible volume decreased but the system maintained the liquid conditions up to a temperature range in which the glass transition yielded a glassy coil with very restricted but not null segmental mobility. The remaining mobility in the glassy state, as well as its conformation, characterised through correlation functions, also depended significantly on the strength of bond angle potential. Further isothermal annealing yielded very compact structures, always amorphous with particular shapes depending on annealing temperature.
机译:单个长聚合物链的构象已使用键波动模型进行建模。非结合链段之间的相互作用已通过Lennard-Jones势引入模型中,而取决于键长和键角的两个能势则考虑了分子内的相互作用。研究了改变键角电位对链构型的影响,该趋势倾向于延长聚合物链。允许链在高温下平衡,采用无规卷曲构象。当系统经历冷却斜坡时,其能量和动态可访问体积减小,但是系统将液体条件保持在一定温度范围内,在该温度范围内,玻璃化转变产生的玻璃状卷材的节段迁移率非常有限,但并非零。通过相关函数表征的玻璃态下的剩余迁移率及其构象,也很大程度上取决于键角电位的强度。进一步的等温退火产生非常紧凑的结构,取决于退火温度,其总是非晶形且具有特定形状。

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