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Use of Quantum Theory of Atoms in Molecules in the Search for Appropriate Hydrogen Atom Locations in X-ray Diffraction Based Studies

机译:在基于X射线衍射的研究中寻找分子中的氢原子理论以寻找合适的氢原子位置

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摘要

A novel approach for the determination of hydrogen positions in studies based on X-ray diffraction is presented. The comparison of proton positions with their corresponding electron density maxima has been performed by means of the Quantum Theory of Atoms in Molecules. The observed differences mainly depend on the type and electronegativity of the atom covalently bonded to the hydrogen, changing in the range of Delta r = 0.004 divided by 0.032 angstrom, while being simultaneously independent from the involvement of atom in the hydrogen bonding. It is postulated that the Delta r correction should be taken into account in electron density based studies. In theoretical single point calculations (sp) based on X-ray diffraction analysis, an elongation of hydrogen covalent bonds with Delta r corrections instead of neutronographic values is proposed. This procedure utilized in this work for the analysis of intramolecular O-H center dot center dot center dot O hydrogen bonding properties leads to good agreement between quantum theoretical results for the optimized structure and X-ray based single point calculations.
机译:介绍了一种基于X射线衍射确定氢位置的新方法。质子位置及其相应的电子密度最大值的比较已通过分子中的原子量子理论进行。观察到的差异主要取决于与氢共价键合的原子的类型和电负性,在Delta r = 0.004除以0.032埃的范围内变化,同时独立于原子参与氢键合。假定在基于电子密度的研究中应考虑Delta r校正。在基于X射线衍射分析的理论单点计算(sp)中,提出了使用Delta r修正代替中子图值的氢共价键的延伸。在这项工作中用于分析分子内O-H中心点中心点中心点中心点O的氢键键合特性的过程导致了优化结构的量子理论结果与基于X射线的单点计算之间的良好一致性。

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