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Combinatorial selection of molecular conformations and supramolecular synthons in quercetin cocrystal landscapes: a route to ternary solids

机译:槲皮素共晶景观中分子构象和超分子合成子的组合选择:三元固体的途径

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摘要

The crystallization of 28 binary and ternary cocrystals of quercetin with dibasic coformers is analyzed in terms of a combinatorial selection from a solution of preferred molecular conformations and supramolecular synthons. The crystal structures are characterized by distinctive O-H center dot center dot center dot N and O-H center dot center dot center dot O based synthons and are classified as nonporous, porous and helical. Variability in molecular conformation and synthon structure led to an increase in the energetic and structural space around the crystallization event. This space is the crystal structure landscape of the compound and is explored by fine-tuning the experimental conditions of crystallization. In the landscape context, we develop a strategy for the isolation of ternary cocrystals with the use of auxiliary template molecules to reduce the molecular and supramolecular `confusion' that is inherent in a molecule like quercetin. The absence of concomitant polymorphism in this study highlights the selectivity in conformation and synthon choice from the virtual combinatorial library in solution.
机译:通过从优选的分子构象和超分子合成子的溶液中进行组合选择,分析了槲皮素与二元共形成物的28种二元和三元共晶体的结晶。晶体结构的特征在于基于O-H中心点中心点中心点N和基于O-H中心点中心点中心点O的合成子,并且被分类为无孔,多孔和螺旋形。分子构象和合成子结构的可变性导致结晶事件周围的能量和结构空间增加。该空间是化合物的晶体结构图,可通过微调结晶的实验条件来探索。在景观环境中,我们开发了一种使用辅助模板分子来分离三元共晶体的策略,以减少槲皮素等分子固有的分子和超分子“混淆”。这项研究中不存在伴随的多态性突出了溶液中虚拟组合文库的构象选择性和合成子选择。

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