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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Energy Minimization of Crystal Structures Containing Flexible Molecules
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Energy Minimization of Crystal Structures Containing Flexible Molecules

机译:包含柔性分子的晶体结构的能量最小化

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This paper proposes a new methodology for the accurate minimization of crystal structures of flexible molecules.The intramolecular contributions to the crystal energy are calculated from ab initio calculations and appear well-balanced with the intermolecular interactions being evaluated via a conformation-dependent distributed multipole model in conjunction with an empirical repulsion-dispersion potential model.The validity of the methodology was initially tested by minimizing the experimental crystal structures of a set of flexible molecules.In a more stringent test,the methodology was used to refine the low-energy structures found in rigid-body crystal structure prediction studies of the diastereomeric salt pair (R)-1-phenylethylammonium (R/S)-2-phenylpropanoate and the antiepileptic drug carbamazepine.The refinement improved the relative stability of the known forms and their ranking in the list of hypothetically generated structures by leading to energetically more favorable hydrogen-bond geometries and dispersion interactions.
机译:本文提出了一种精确最小化柔性分子晶体结构的新方法,通过从头算来计算分子内对晶体能量的贡献,并通过构象相关的分布多极模型评估分子间的相互作用,从而显示出良好的平衡。该方法的有效性最初是通过最小化一组柔性分子的实验晶体结构来测试的。在更严格的测试中,该方法被用来完善在低能量结构中发现的低能结构。非对映异构体盐对(R)-1-苯基乙基铵(R / S)-2-苯基丙酸酯和抗癫痫药卡马西平的刚体晶体结构预测研究。改进改进了已知形式的相对稳定性及其在列表中的排名通过产生在能量上更有利的水凝作用来产生假想的结构键合几何形状和色散相互作用。

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