首页> 外文期刊>Zeitschrift fur Naturforschung, B. A Journal of Chemical Sciences >Analysis of two [2]catenanes based on electron densities from invariom refinement and results from DFT calculations
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Analysis of two [2]catenanes based on electron densities from invariom refinement and results from DFT calculations

机译:基于电子密度的两[2]连环烷的分析和DFT计算结果

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摘要

Catenanes are of considerable interest as potential building blocks for molecular machines. The simplest [2] catenanes, Hopf links, consist of two macrocycles that are mechanically interlocked. This unusual architecture cannot be opened without breaking at least one covalent bond. Based on these structural characteristics, unusual properties on Hirshfeld or electrostatic potential surfaces could be expected. For a comparison of their structural and electronic properties, the electron densities (EDs) of two [2] catenanes, coded H(2)2 and H(4)L7 in the original papers, were examined after application of the invariom formalism, relying on X-ray diffraction data collected earlier. The obtained electron density distributions were subjected to an analysis using the QTAIM formalism to yield bond and atomic properties. Moreover, molecular Hirshfeld surfaces and electrostatic potentials (ESP) were calculated. There are different types of intra-and intermolecular interactions in these two [2] catenanes. In addition to classical N-H center dot center dot center dot N and C-H center dot center dot center dot O hydrogen bonds, various types of pi center dot center dot center dot pi interactions in H(2)2 and in H(4)L7 exist. Most of them are verified by local ED concentrations visible on the corresponding Hirshfeld surfaces, except for the parallel pi center dot center dot center dot pi interactions in H(2)2, which are either too weak or too diffuse to generate an ED signal on the Hirshfeld surface between the contributing aromatic rings. The electrostatic potentials (ESPs) were calculated and displayed on molecular surfaces. The interaction in the cavity of one macrocycle with the penetrated fragment of the second one was examined and it was found that corresponding to the above-mentioned contacts attractive and repulsive interactions exist. Additionally the ED was examined using results of density functional calculations, including non-covalent interaction index (NCI) and electron localizability indicator (ELI-D) surface analysis, complementing experimental findings.
机译:Catenanes对分子机器的潜在建筑块具有相当大的兴趣。最简单的[2] catenanes,Hopf链接,由两个机械互锁的宏ycly组成。在不破坏至少一个共价键的情况下,不能打开这种不寻常的架构。基于这些结构特征,可以预期Hirshfeld或静电势表面上的不寻常性质。为了比较它们的结构和电子性质,在施用无限形式主义之后,检查原纸中的两个[2]丁烷,编码的H(2)2和H(4)L7的电子密度(2)L7,依靠在较早的X射线衍射数据上。使用QtaiS形式主义对所获得的电子密度分布进行分析,得到键和原子特性。此外,计算了分子HIRSHFELD表面和静电电位(ESP)。这两种[2] catenanes中存在不同类型的内分子间相互作用。除了经典的NH中心点中心点中心点N和CH中心点中心点中心点O氢键外,还存在各种类型的PI中心点中心点中心点PI相互作用,存在于H(4)L7中。其中大多数由它们在相应的HIRSHFELD表面上可见的本地ED浓度验证,除了H(2)2中的并行PI中心点中心点中心点PI相互作用,它们是过于弱或太散射以产生ED信号贡献芳环之间的Hirshfeld表面。计算静电电位(ESP)并显示在分子表面上。研究了一种宏型在具有渗透片段的脉洞的腔体的相互作用被检查,发现与上述接触相对应的具有吸引力和排斥相互作用。另外,使用密度函数计算的结果检查ED,包括非共价相互作用指数(NCI)和电子定位指示剂(ELI-D)表面分析,补充实验结果。

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