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Submolecular partitioning of morphine hydrate based on its experimental charge density at 25 K

机译:基于吗啡水合物在25 K下的实验电荷密度的亚分子分配

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摘要

The electron density distribution of morphine hydrate has been determined from high-resolution single-crystal X-ray diffraction measurements at 25 K. A topological analysis was applied and, in order to analyze the submolecular transferability based on an experimental electron density, a partitioning of the molecule into atomic regions was carried out, making use of Bader's zero-flux surfaces to yield atomic volumes and charges. The properties obtained were compared with the theoretical calculations of smaller fragment molecules, from which the complete morphine molecule can be reconstructed, and with theoretical studies of another opiate, Oripavine PEO, reported in the literature.
机译:通过25 K的高分辨率单晶X射线衍射测量,确定了吗啡水合物的电子密度分布。进行了拓扑分析,为了基于实验电子密度分析亚分子的可转移性,对利用Bader的零通量表面将分子分解成原子区域,以产生原子体积和电荷。将获得的性质与较小片段分子的理论计算(可从中重构出完整的吗啡分子)进行比较,并与文献中报道的另一种鸦片鸦片Oripavine PEO的理论研究进行比较。

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