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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Molecular dynamics study of the conformation and dynamics of precisely branched polyethylene
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Molecular dynamics study of the conformation and dynamics of precisely branched polyethylene

机译:精确支化聚乙烯的构象和动力学的分子动力学研究

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摘要

The conformation and dynamics of precisely branched polyethylene, i.e., polyethylene molecules containing regularly spaced, short chain branches along its linear backbone, were studied using molecular dynamics simulation. Models with branch content varying from 0 to 47.6 branches per 1000 backbone carbons were studied over a temperature range of 273-550 K and under a constant pressure of 1 bar. Two types of models were built, one of which contained ethyl branches while the other contained hexyl branches. The results indicated that at a given temperature, the global orientation order parameter decreased almost linearly with increasing branch content up to a value of approximately 38.5 and increased considerably and unexpectedly at a branch content of 47.6. The order parameter was insensitive to the branch length except at high branch contents. The computed packing lengths and activation energy for diffusion are consistent with the above observations.
机译:使用分子动力学模拟研究了精确分支的聚乙烯的构象和动力学,即沿着其线性骨架包含规则间隔的短链分支的聚乙烯分子。在273-550 K的温度范围内和1 bar的恒定压力下,研究了每1000个主链碳中支链含量在0到47.6支之间变化的模型。建立了两种类型的模型,其中一种包含乙基支链,而另一种包含己基支链。结果表明,在给定的温度下,总体取向顺序参数随着支链含量的增加几乎线性降低,直至达到约38.5的值,而在支链含量为47.6时显着且出乎意料地增加。除了在高分支含量的情况下,order参数对分支长度不敏感。计算的堆积长度和扩散的活化能与上述观察结果一致。

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