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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Experimental and computational approaches to rationalise multicomponent supramolecular assemblies: dapsone monosolvates
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Experimental and computational approaches to rationalise multicomponent supramolecular assemblies: dapsone monosolvates

机译:合理化多组分超分子组件的实验和计算方法:双糖酮酮

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The monosolvate crystal energy landscapes of dapsone (DDS) including the solvents carbon tetrachloride, acetone, cyclohexanone, dimethyl formamide, tetrahydrofuran, methyl ethyl ketone, 1,2-dichloroethane, 1,4-dioxane, dichloromethane and chloroform were established using experimental and computational approaches. To rationalise and understand solvate formation, solvate stability and desolvation reactions a careful control of the experimental crystallisation and storage conditions, a range of thermoanalytical methods and crystal structure prediction were required. Six of the eight DDS monosolvates are reported and characterised for the first time. Structural similarity and diversity of the at ambient conditions unstable monosolvates were apparent from the computed crystal energy landscapes, which had the experimental packings as lowest energy structures. The computed structures were used as input for Rietveld refinements and isostructurality of four of the monosolvates was confirmed. Packing comparisons of the solvate structures and molecular properties of the solvent molecules indicated that both size/shape of the solvent molecule and the possible DDSMIDLINE HORIZONTAL ELLIPSISsolvent interactions are the important factors for DDS solvate formation. Through the combination of experiment and theory solvate stability and structural features have been rationalised.
机译:使用实验和计算建立了包括溶剂,包括溶剂四氯化碳,丙酮,环己酮,二甲基甲酰胺,四氢呋喃,甲基乙基酮,1,4-二恶烷,二氯甲烷和氯仿的溶剂晶体晶体能量景观方法。为了合理化和理解溶剂化物形成,溶剂化物稳定性和降解反应对实验结晶和储存条件的仔细控制,需要一系列热分析方法和晶体结构预测。六种DDS单溶胶化物中的六个是第一次报告和表征。在计算的晶体能量景观中显而易见的环境条件的结构相似性和多样性,从而具有实验填料作为最低能量结构的实验填料。计算的结构用作Rietveld改进的输入,并确认了四种单溶化物的异节性。溶剂分子的溶剂化物结构和分子特性的填充比较表明,溶剂分子的尺寸/形状和可能的DDSmidline水平椭圆形相互作用是DDS溶剂化物形成的重要因素。通过实验和理论的组合,溶剂化物稳定性和结构特征已经合理化。

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