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首页> 外文期刊>Journal of the Physical Society of Japan >Dynamic Properties of Densely Grafted Polymer Brushes Investigated by Multistep Relaxation Mode Analysis
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Dynamic Properties of Densely Grafted Polymer Brushes Investigated by Multistep Relaxation Mode Analysis

机译:多步弛豫模式分析研究浓度嫁接聚合物刷的动态特性

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The relaxation processes of densely grafted linear and ring polymer brushes in thermal equilibrium are studied via coarse-grained molecular dynamics simulations and relaxation mode analysis (RMA). Good solvent conditions and the free-draining limit are assumed. The longest relaxation time tau( )of a polymer is evaluated via multistep RMA, where the relaxation modes and rates estimated in the previous RMA step are used in the next step. The exponent Delta of the power-law dependence of tau on the chain length N, tau proportional to N-Delta, is estimated. For linear polymer brushes, Delta similar or equal to 5.9, which is considerably larger than the value estimated in a previous simulation study. On the other hand, for ring polymer brushes, Delta similar or equal to 3.7, which is consistent with previous work. The physical nature of the slow relaxation modes and the difference between linear and ring brushes are discussed.
机译:通过粗粒子动力学模拟和弛豫模式分析(RMA)研究了热平衡中密度接枝线性和环聚合物刷的弛豫过程。 假设良好的溶剂条件和自由排水限制。 通过多步RMA评估聚合物的最长的弛豫时间Tau(),其中在前一步中使用先前的RMA步骤中估计的松弛模式和速率。 估计TAU对链长N,TAU与N-DELTA成比例的幂律依赖的指数Δ。 对于线性聚合物刷,Δ类似或等于5.9,其比先前模拟研究中估计的值相当大。 另一方面,对于环聚合物刷,δ相似或等于3.7,这与先前的工作一致。 讨论了慢松弛模式的物理性质及线性和环刷之间的差异。

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