Cocrystal trimorphism as a consequence of the orthogonality of halogen- and hydrogen-bonds synthons
Filip Topić, Katarina Lisac, Mihails Arhangelskis, Kari Rissanen, Dominik Cinčić, Tomislav Friščić
Abstract
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Filip Topić, Katarina Lisac, Mihails Arhangelskis, Kari Rissanen, Dominik Cinčić, Tomislav Friščić
Abstract
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True trimorphic cocrystals, i.e. multi-component molecular crystals of identical composition that exhibit three polymorphic structures, are exceedingly rare and so far no halogen-bonded cocrystal system has been reported to exhibit trimorphism. Here we describe a unique example of a trimorphic cocrystal exhibiting both hydrogen and halogen bonds in which the differences between polymorphs reveal their orthogonality, evident by the apparently independent variation of well-defined hydrogen- and halogen-bonded motifs.
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True trimorphic cocrystals, i.e. multi-component molecular crystals of identical composition that exhibit three polymorphic structures, are exceedingly rare and so far no halogen-bonded cocrystal system has been reported to exhibit trimorphism. Here we describe a unique example of a trimorphic cocrystal exhibiting both hydrogen and halogen bonds in which the differences between polymorphs reveal their orthogonality, evident by the apparently independent variation of well-defined hydrogen- and halogen-bonded motifs.
Key concepts: Synthon, Cocrystal, Halogen, Hydrogen bond, Halogen bond, Chemistry, Orthogonality, Crystal engineering