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Systematic study of glass transition in low-molecular phthalonitriles: Insight from computer simulations

机译:低分子邻苯二甲腈玻璃化转变的系统研究:计算机模拟的启示

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Phthalonitrile compounds with Si bridges were recently suggested for producing thermosetting polymer composites with reduced T-g and thus expanded processing range. The detailed experimental investigation of this class of phthalonitriles is still difficult due to development time and costs limitations and the need to take into account the structural changes during the crosslinking. In this paper, we try to overcome these limitations using computer simulations. We performed full-atomistic molecular dynamics simulations of various phthalonitrile compounds to understand the influence of molecular structure on the bulk glass temperature T-g. Two molecular properties affect T-g of the resulting bulk compound: the size of the residue and the length of the Si bridge. The larger residues lead to higher T(g)s, while compounds with longer Si bridges have lower T(g)s. We have also studied relaxation mechanisms involved in the classification of the samples. Two different factors influence the relaxation mechanisms: energetic, which is provided by the rigidity of molecules, and entropic, connected with the available volume of the conformational space of the monomer. Published by AIP Publishing.
机译:最近提出了具有Si桥的邻苯二甲腈化合物用于生产具有降低的T-g并因此扩大加工范围的热固性聚合物复合材料。由于开发时间和成本的限制,并且需要考虑交联过程中的结构变化,因此这类苯二甲腈的详细实验研究仍然很困难。在本文中,我们尝试使用计算机仿真来克服这些限制。我们进行了各种邻苯二甲腈化合物的全原子分子动力学模拟,以了解分子结构对玻璃体温度T-g的影响。两种分子性质会影响所得本体化合物的T-g:残基的大小和Si桥的长度。较大的残基导致较高的T(g)s,而具有较长Si桥的化合物具有较低的T(g)s。我们还研究了样本分类中涉及的松弛机制。有两种不同的因素影响弛豫机理:高能的(由分子的刚性提供)和熵的(与单体的构象空间的可用体积有关)。由AIP Publishing发布。

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