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A Comparative Study of Intramolecular Mobility of Single Siloxane and Carbosilane Dendrimers via Molecular Dynamics Simulations

机译:通过分子动力学模拟比较单一硅氧烷和碳硅烷树状大分子的分子内迁移率

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摘要

A comparative analysis of intramolecular dynamics of four types of isolated dendrimers from the fourth to the seventh generations belonging to the siloxane and carbosilane families, differing in spacer length, core functionality, and the type of chemical bonds, has been performed via atomic molecular dynamics simulations. The average radial and angular positions of all Si branching atoms of various topological layers within the dendrimer interior, as well as their variations, have been calculated, and the distributions of the relaxation times of their radial and angular motions have been found. It has been shown that the dendrons of all the dendrimers elongate from the center and decrease in a solid angle with an increasing generation number. The characteristic relaxation times of both angular and radial motions of Si atoms are of the order of a few nanoseconds, and they increase with an increasing generation number and decrease with temperature, with the angular relaxation times being larger than the radial ones. The relaxation times in the carbosilanes are larger than those in the siloxanes. The rotational angle dynamics of the carbosilane dendrimers show that the chain bending is mainly realized via trans-gauche transitions in the Si branching bonds.
机译:通过原子分子动力学模拟,对硅氧烷和碳硅烷家族的第四至第七代的四种类型的树枝状大分子的分子内动力学进行了比较分析,它们的间隔长度,核心功能和化学键类型不同。计算了树枝状聚合物内部各个拓扑层的所有Si分支原子的平均径向和角位置及其变化,并找到了其径向和角运动的弛豫时间分布。已经显示所有树枝状聚合物的树枝状分子从中心延伸并且以增加的世代数以立体角减小。 Si原子的角向运动和径向运动的特征弛豫时间都在几纳秒的数量级,并且它们随着世代数的增加而增加,并且随着温度的降低而减小,其中角弛豫时间大于径向的。碳硅烷中的弛豫时间大于硅氧烷中的弛豫时间。碳硅烷树枝状聚合物的旋转角动力学表明,链弯曲主要是通过Si支化键中的反式过渡转变实现的。

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