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GAFF-IC: realistic viscosities for isocyanate molecules with a GAFF-based force field

机译:GAFF-IC:具有基于GAFF的力域的异氰酸酯分子的现实粘度

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摘要

Aliphatic diisocyanates and their derivatives are key liquid components in the industrial processing of polyurethane materials. In particular, for the synthesis of crosslinked polyurethane materials, the higher functionality molecules obtained by reacting three -or more- diisocyanates are of interest. However, despite their widespread application, the relation between molecular structure and macroscopic physical properties, in particular viscosity, is poorly understood in these systems. In this work, we introduce a new force field parameter set, GAFF-IC, based on the widely-used and versatile GAFF force field, meant for accurate predictions of physical properties of isocyanate-based molecular liquids. The new parameters allow to predict the vaporization enthalpies and densities of several isocyanate-based molecules, which are found in excellent agreement with the available experimental data. The effectiveness and transferability of the improved parameters is verified by calculating the viscosities of several isocyanates, isocyanate dimers (uretdiones) and isocyanate trimers (isocyanurates), resulting in accurate viscosity predictions in excellent agreement with experimental values.
机译:脂族二异氰酸酯及其衍生物是聚氨酯材料工业加工中的关键液体组分。特别地,对于交联的聚氨酯材料的合成,通过使三体更加二异氰酸酯反应获得的较高的官能分子是感兴趣的。然而,尽管其广泛应用,但在这些系统中,分子结构与宏观物理性质的关系,特别是粘度较差地理解。在这项工作中,我们介绍了一种基于广泛使用的和多功能GAFF Force领域的新力场参数集GAFF-IC,意味着准确预测异氰酸酯的分子液体物理性质。新参数允许预测几种基于异氰酸酯的分子的汽化焓和密度,其与可用的实验数据的优异一致性相一致。通过计算几种异氰酸酯,异氰酸酯二聚体(尿液二聚体)和异氰酸酯三聚合物(异氰脲酸酯)的粘度来验证改进参数的有效性和可转移性,从而与实验值非常一致的精确粘度预测。

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