4.6 Review

Polymorphs with remarkably distinct physical and/or chemical properties

期刊

CHEMICAL RECORD
卷 23, 期 1, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/tcr.202200173

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Polymorphism; Supramolecular Interaction; Material Science; Pharmaceutical Material; Structure-property Correlation

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Polymorphism is a common phenomenon in crystals, where different crystal structures of the same compound lead to significant changes in materials properties. It is difficult to control polymorphism due to the close energy levels between different polymorphic forms. Polymorphism is not only of interest to academia but also has widespread applications in materials science and pharmaceutical industries.
Polymorphism in crystals is known since 1822 and the credit goes to Mitscherlich who realized the existence of different crystal structures of the same compound while working with some arsenate and phosphate salts. Later on, this phenomenon was observed also in organic crystals. With the advent of different technologies, especially the easy availability of single crystal XRD instruments, polymorphism in crystals has become a common phenomenon. Almost 37 % of compounds (single component) are polymorphic to date. As the energies of the different polymorphic forms are very close to each other, small changes in crystallization conditions might lead to different polymorphic structures. As a result, sometimes it is difficult to control polymorphism. For this reason, it is considered to be a nuisance to crystal engineering. It has been realized that the property of a material depends not only on the molecular structure but also on its crystal structure. Therefore, it is not only of interest to academia but also has widespread applications in the materials science as well as pharmaceutical industries. In this review, we have discussed polymorphism which causes significant changes in materials properties in different fields of solid-state science, such as electrical, magnetic, SHG, thermal expansion, mechanical, luminescence, color, and pharmaceutical. Therefore, this review will interest researchers from supramolecular chemistry, materials science as well as medicinal chemistry.

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