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Structure–property relationship of nitramino oxetane polymers: a computational study on the effect of pendant chains

机译:硝氨基氧杂环丁烷聚合物的结构-性质关系:悬链效应的计算研究

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A comprehensive study of the effect of the structure of pendant chains on the energetic and mechanical properties of nitramino oxetane polymers has been conducted. Enthalpy of formation (EOF), density, glass transition temperature, and elastic moduli were calculated via quantum mechanics and molecular dynamic simulations. It is shown in this study that –CH _(2) groups are unfavorable for EOFs, densities, and elastic moduli of the polymers, whereas –NCH _(3) NO _(2) groups are favorable for these parameters. The glass transition temperature ( T _(g) ) shows non-monotonic features with increasing –CH _(2) groups; it reaches a minimum value when the pendant chains consist of 1 or 2 –CH _(2) groups. Moreover, the location of the pendant chains can strongly affect T _(g) of the polymers. Our study suggests that the asymmetric structure, distantly located pendant chains and appropriate length of the pendant chains can effectively reduce T _(g) of the polymers with negligible compromise to other properties.
机译:进行了侧链结构对硝基氨基氧杂环丁烷聚合物的能量和机械性能影响的综合研究。通过量子力学和分子动力学模拟计算形成焓(EOF),密度,玻璃化转变温度和弹性模量。该研究表明,–CH _(2)基团对聚合物的EOF,密度和弹性模量不利,而–NCH _(3)NO _(2)基团对这些参数有利。玻璃化转变温度(T _(g))显示出–CH _(2)基团增加的非单调特征。当侧链由1个或2个–CH _(2)组组成时,它达到最小值。而且,侧链的位置可以强烈影响聚合物的T_(g)。我们的研究表明,不对称结构,悬垂链的位置较远以及悬链的适当长度可以有效降低聚合物的T _(g),而对其他性能的影响可以忽略不计。

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