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Towards an understanding of the propensity for crystalline hydrate formation by molecular compounds

机译:理解分子化合物形成结晶水合物的倾向

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Hydrates are technologically important and ubiquitous yet they remain a poorly understood and understudied class of molecular crystals. In this work, we attempt to rationalize propensity towards hydrate formation through crystallization studies of molecules that lack strong hydrogen-bond donor groups. A Cambridge Structural Database (CSD) survey indicates that the statistical occurrence of hydrates in 124 molecules that contain five- and six-membered N-heterocyclic aromatic moieties is 18.5%. However, hydrate screening experiments on a library of 11 N-heterocyclic aromatic compounds with at least two acceptor moieties and no competing hydrogen-bond donors or acceptors reveals that over 70% of this group form hydrates, suggesting that extrapolation from CSD statistics might, at least in some cases, be deceiving. Slurrying in water and exposure to humidity were found to be the most effective discovery methods. Electrostatic potential maps and/or analysis of the crystal packing in anhydrate structures was used to rationalize why certain molecules did not readily form hydrates.
机译:水合物在技术上很重要且无处不在,但它们仍然是一类未被广泛了解和研究的分子晶体。在这项工作中,我们尝试通过对缺乏强氢键供体基团的分子进行结晶研究来合理化形成水合物的倾向。剑桥结构数据库(CSD)的一项调查表明,含有五元和六元N杂环芳族部分的124个分子中水合物的统计发生率为18.5%。但是,对11种具有至少两个受体部分且没有竞争性氢键供体或受体的N-杂环芳族化合物进行的水合物筛选实验表明,该组中超过70%形成水合物,这表明CSD统计数据可能会在至少在某些情况下,具有欺骗性。发现将水制浆和暴露于湿气是最有效的发现方法。静电势图和/或无水物结构中晶体堆积的分析被用来合理化为什么某些分子不易形成水合物的原因。

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