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An analysis of the experimental and theoretical charge density distributions of the piroxicam–saccharin co-crystal and its constituents

机译:吡罗昔康 - 糖精共晶及其成分的实验性和理论电荷密度分布分析

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Experimental and theoretical charge density analyses of piroxicam ( 1 ), saccharin ( 2 ) and their 1?:?1 co-crystal complex ( 3 ) have been carried out. Electron density distribution (EDD) was determined through the use of high-resolution single crystal X-ray diffraction and the data were modelled using the conventional multipole model of electron density according to the Hansen–Coppens formalism. A method for optimising the core density refinement of sulfur atoms is discussed, with emphasis on the reduction of residual electron density that is typically associated with this atom. The asymmetric unit of complex ( 3 ) contains single molecules of saccharin and the zwitterionic form of piroxicam. These are held together by weak interactions (hydrogen bonds, π–π and van der Waals interactions), ranging in strength from 4 to 160 kJ mol ~(?1) , working together to stabilise the complex; analysis of the molecular electrostatic potential (MEP) of the complexes showed electron redistribution within the co-crystal, facilitating the formation of these generally weak interactions. Interestingly, in the zwitterionic form of piroxicam, the charge distribution reveals that the positive and negative charges are not associated with the formal charges normally associated with this description, but are distributed over adjacent molecular fragments. The use of anisotropic displacement parameters (ADPs) for hydrogen atoms in the multipole model was also investigated but no improvement in the quality of the topological analysis was found.
机译:吡罗昔康(1),糖精(2)及其1的实验和理论电荷密度分析:α1,已经进行了合晶络合物(3)。通过使用高分辨率单晶X射线衍射测定电子密度分布(EDD),并且根据汉森 - 共同的形式主义,使用传统的电子密度模型建模数据。讨论了用于优化硫原子的核心密度细化的方法,重点是降低通常与该原子相关的残余电子密度。复合物(3)的不对称单位含有单一分子的糖精和吡脲的两性离子形式。这些通过弱相互作用(氢键,π-π和范德华相互作用)一起保持在一起,在4至160kJ摩尔〜(α1)的强度范围内,共同努力稳定复合物;分析复合物的分子静电电位(MEP)在共晶内显示电子再分配,促进了这些通常弱相互作用的形成。有趣的是,在吡罗昔康的两性离子形式中,电荷分布揭示了正极和负电荷与通常与该描述相关的正规电荷相关,而是在相邻的分子片段上分布。还研究了在多极模型中用于氢原子的各向异性位移参数(ADP),但发现了拓扑分析的质量没有改善。

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