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首页> 外文期刊>The Journal of Chemical Physics >A comparative study of thermodynamic, conformational, and structural properties of bottlebrush with star and ring polymer melts
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A comparative study of thermodynamic, conformational, and structural properties of bottlebrush with star and ring polymer melts

机译:具有明星和环聚合物熔体吹瓶刷热力学,构象和结构性能的对比研究

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摘要

Thermodynamic, conformational, and structural properties of bottlebrush polymer melts are investigated with molecular dynamics simulations and compared to linear, regular star, and unknotted ring polymer melts to gauge the influence of molecular topology on polymer melt properties. We focus on the variation of the backbone chain length, the grafting density along the backbone, and the length of the side chains at different temperatures above the melt glass transition temperature. Based on these comparisons, we find that the segmental density, isothermal compressibility, and isobaric thermal expansion of bottlebrush melts are quantitatively similar to unknotted ring polymer melts and star polymer melts having a moderate number (f = 5 to 6) of arms. These similarities extend to the mass scaling of the chain radius of gyration. Our results together indicate that the configurational properties of bottlebrush polymers in their melt state are more similar to randomly branched polymers than linear polymer chains. We also find that the average shape of bottlebrush polymers having short backbone chains with respect to the side chain length is also rather similar to the unknotted ring and moderately branched star polymers in their melt state. As a general trend, the molecular shape of bottlebrush polymers becomes more spherically symmetric when the length of the side chains has a commensurate length as the backbone chain. Finally, we calculate the partial static structure factor of the backbone segments and we find the emergence of a peak at the length scales that characterizes the average distance between the backbone chains. This peak is absent when we calculate the full static structure factor. We characterize the scaling of this peak with parameters characterizing the bottlebrush molecular architecture to aid in the experimental characterization of these molecules by neutron scattering.
机译:采用分子动力学模拟研究了洗瓶聚合物熔体的热力学,构象和结构性能,并与线性,常规恒星和不发光的环聚合物熔体进行比较,以衡量分子拓扑对聚合物熔体性能的影响。我们专注于骨干链长度的变化,沿骨架的移植密度,以及在熔体玻璃化转变温度的不同温度下的侧链的长度。根据这些比较,我们发现瓶装熔体的节段密度,等温可压缩性和异巴热膨胀是定量类似于未呈现的环聚合物熔体和具有中等数量(F = 5至6)的臂的熔体。这些相似之处延伸到环链半径的大规模缩放。我们的结果在一起表明,比线性聚合物链更类似于随机支化的聚合物更类似于随机支化的聚合物的熔化态聚合物的配置性质。我们还发现,对于侧链长度具有短骨干链的瓶装聚合物的平均形状也与其熔体状态的不发光的环和中等分支的星形聚合物相似。作为一般趋势,当侧链的长度具有与骨干链的相称长度具有相应的长度时,瓶装聚合物的分子形状变得更为正方形对称。最后,我们计算骨干段的部分静态结构因子,并且我们发现在表征骨干链之间的平均距离处的长度尺度处的峰值的出现。当我们计算完整的静态结构因子时,此峰值不存在。我们以表征瓶子分子架构的参数表征了该峰的缩放,以帮助通过中子散射对这些分子的实验表征有助于这些分子的实验表征。

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