首页> 外文期刊>Journal of physical chemistry letters >DORI Reveals the Influence of Noncovalent Interactions on Covalent Bonding Patterns in Molecular Crystals Under Pressure
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DORI Reveals the Influence of Noncovalent Interactions on Covalent Bonding Patterns in Molecular Crystals Under Pressure

机译:DORI揭示了在压力下分子晶体中共价相互作用对共价键合模式的影响

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摘要

The study of organic molecular crystals under high pressure provides fundamental insight into crystal packing distortions and reveals mechanisms of phase transitions and the crystallization of polymorphs. These solid-state transformations can be monitored directly by analyzing electron charge densities that are experimentally obtained at high pressure. However, restricting the analysis to the featureless electron density does not reveal the chemical bonding nature and the existence of intermolecular interactions. This shortcoming can be resolved by the use of the DORI (density overlap region indicator) descriptor, which is capable of simultaneously detecting both covalent patterns and noncovalent interactions from electron density and its derivatives. Using the biscarbonyl[14]annulene crystal under pressure as an example, we demonstrate how DORI can be exploited on experimental electron densities to reveal and monitor changes in electronic structure patterns resulting from molecular compression. A novel approach based on a flood-fill-type algorithm is proposed for analyzing the topology of the DORI isosurface. This approach avoids the arbitrary selection of DORI isovalues and provides an intuitive way to assess how compression packing affects covalent bonding in organic solids.
机译:高压下有机分子晶体的研究为晶体包装扭曲的基本洞察力提供了基本的洞察,并揭示了相转变的机制和多晶型物的结晶。可以通过分析在高压下实验获得的电子电荷密度来直接监测这些固态变换。然而,将分析限制对无特色电子密度没有揭示化学键合性质和分子间相互作用的存在。通过使用DORI(密度重叠区域指示器)描述符可以解决这种缺点,其能够同时检测来自电子密度及其衍生物的共价模式和非共价相互作用。在压力下使用诸如碳氢氧基[14]作为示例,我们展示了如何在实验电子密度上利用Dori,以揭示由分子压缩产生的电子结构模式的变化。提出了一种基于洪水填充型算法的新方法,用于分析DORI Isosurface的拓扑。该方法避免了多尔缺乏的任意选择,并提供了评估压缩包装如何影响有机固体中的共价键合的直观方式。

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    Laboratory for Computational Molecular Design (LCMD) Institute of Chemical Sciences and Engineering (ISIC) école Polytechnique Fédérale de Lausanne (EPFL);

    National Center for Computational Design and Discovery of Novel Materials (MARVEL) école Polytechnique Fédérale de Lausanne (EPFL);

    National Center for Computational Design and Discovery of Novel Materials (MARVEL) école Polytechnique Fédérale de Lausanne (EPFL);

    Laboratory for Computational Molecular Design (LCMD) Institute of Chemical Sciences and Engineering (ISIC) école Polytechnique Fédérale de Lausanne (EPFL);

    Laboratoire CRM2;

    National Center for Computational Design and Discovery of Novel Materials (MARVEL) école Polytechnique Fédérale de Lausanne (EPFL);

    Laboratory for Computational Molecular Design (LCMD) Institute of Chemical Sciences and Engineering (ISIC) école Polytechnique Fédérale de Lausanne (EPFL);

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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