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Predicting the Position of the Hydrogen Atom in the Short Intramolecular Hydrogen Bond of the Hydrogen Maleate Anion from Geometric Correlations

机译:预测氢原子在几何相关性的氢原子的短分子内氢键中的位置

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摘要

The position of the hydrogen atom inside the strong and short intramolecular hydrogen bond of the hydrogen maleate anion strongly varies depending on the crystalline environment. Therefore, it has not been possible in the past to accurately determine it using X-ray diffraction data although there are 292 hydrogen maleate crystal structures with different cations in the literature. In this study, a geometric correlation for the accurate prediction of the hydrogen position in the short intramolecular hydrogen bond is presented. The results used to derive the correlation are obtained from low-temperature neutron-diffraction studies on nine different hydrogen maleate salts that span the whole range from perfectly symmetric to highly asymmetric intramolecular hydrogen bonds. Since the only variable in the correlation as derived from the neutron data is the O center dot center dot center dot O distance, the hydrogen atom position in question can subsequently be predicted using information that is accurately available from routine X-ray data. The procedure is tested using high-resolution low-temperature synchrotron X-ray diffraction structures of the same compounds, before it is applied to X-ray data sets found in the literature in which the hydrogen atom position was not determined accurately or not determined at all, e.g., using a riding model.
机译:氢原子内的位置在氢气阴离子的强和短的分子内氢键内部根据结晶环境而变化。因此,过去尚未有可能使用X射线衍射数据准确地确定其尽管存在292个Malide晶体结构,但文献中有不同的阳离子。在该研究中,提出了用于简短的分子内氢键中的氢位置的精确预测的几何相关性。用于导出相关性的结果是从对氮素的低温中子衍射研究获得,该研究跨越全部范围从完全称对称的高度不对称的分子内氢键。由于与中子数据导出的相关的唯一变量是O中心点中心点中心点O距离,因此可以使用从常规X射线数据准确可获得的信息来预测所讨论的氢原子位置。使用相同化合物的高分辨率低温同步X射线衍射结构进行测试,然后在施加到文献中发现的X射线数据集之前,其中不确定或不确定氢原子位置所有,例如,使用骑行模型。

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  • 来源
    《Crystal growth & design》 |2017年第7期|共14页
  • 作者单位

    Univ Bremen Inst Inorgan Chem &

    Crystallog Leobener Str NW2 D-28359 Bremen Germany;

    Australian Nucl Sci &

    Technol Org New Illawarra Rd Lucas Heights NSW 2234 Australia;

    Univ Warsaw Chem Dept Biol &

    Chem Res Ctr Zwirki &

    Wigury 101 PL-02089 Warsaw Poland;

    Univ Western Australia Sch Mol Sci Chem M313 35 Stirling Highway Crawley WA 6009 Australia;

    Univ Western Australia Sch Mol Sci Chem M313 35 Stirling Highway Crawley WA 6009 Australia;

    Australian Synchrotron 800 Blackburn Rd Clayton Vic 3168 Australia;

    Univ Gottingen Inst Inorgan Chem Tammannstr 4 D-37077 Gottingen Germany;

    Japan Synchrotron Radiat Res Inst JASRI 1-1-1 Kouto Sayo Hyogo 6795198 Japan;

    Univ Tsukuba Div Phys Fac Pure &

    Appl Sci TIMS Tsukuba Ibaraki Japan;

    Univ Bremen Inst Inorgan Chem &

    Crystallog Leobener Str NW2 D-28359 Bremen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 晶体学;
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