Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560 012 (India).
Angew Chem Int Ed Engl. 2014 Nov 24;53(48):13178-82. doi: 10.1002/anie.201402668. Epub 2014 Oct 3.
A large number of crystal forms, polymorphs and pseudopolymorphs, have been isolated in the phloroglucinol-dipyridylethylene (PGL:DPE) and phloroglucinol-phenazine (PGL:PHE) systems. An understanding of the intermolecular interactions and synthon preferences in these binary systems enables one to design a ternary molecular solid that consists of PGL, PHE, and DPE, and also others where DPE is replaced by other heterocycles. Clean isolation of these ternary cocrystals demonstrates synthon amplification during crystallization. These results point to the lesser likelihood of polymorphism in multicomponent crystals compared to single-component crystals. The appearance of several crystal forms during crystallization of a multicomponent system can be viewed as combinatorial crystal synthesis with synthon selection from a solution library. The resulting polymorphs and pseudopolymorphs that are obtained constitute a crystal structure landscape.
在间苯三酚-二吡啶乙烯(PGL:DPE)和间苯三酚-吩嗪(PGL:PHE)体系中已经分离出大量的晶体形式、多晶型物和假多晶型物。了解这些二元体系中的分子间相互作用和连接基偏好,可以设计出由 PGL、PHE 和 DPE 组成的三元分子固体,也可以设计出用其他杂环取代 DPE 的三元分子固体。这些三元共晶的纯净分离证明了在结晶过程中连接基的放大。这些结果表明,与单组分晶体相比,多组分晶体中多晶型的可能性较小。在多组分体系的结晶过程中出现几种晶体形式,可以看作是从溶液库中选择连接基的组合晶体合成。由此得到的多晶型物和假多晶型物构成了晶体结构的景观。