Polytypes and planar defects revealed in the purine base xanthine using multi-dimensional electron diffraction

Guardat en:
Dades bibliogràfiques
Publicat a:Communications Chemistry vol. 8, no. 1 (2025), p. 331-341
Autor principal: Leung, Helen W.
Altres autors: Copley, Royston C. B., Lampronti, Giulio I., Day, Sarah J., Saunders, Lucy K., Johnstone, Duncan N., Midgley, Paul A.
Publicat:
Nature Publishing Group
Matèries:
Accés en línia:Citation/Abstract
Full Text
Full Text - PDF
Etiquetes: Afegir etiqueta
Sense etiquetes, Sigues el primer a etiquetar aquest registre!
Descripció
Resum:Layered crystal structures are commonly found across organic and inorganic material systems. When in-plane atomic arrangement remains (nearly) identical, a stacking variation of these layers may result in twinning, planar disorder, or polytypes, a form of polymorphism derived from altering stacking sequences. In this work, we use multi-dimensional electron diffraction (ED) modalities to explore the microstructure of xanthine, an archetypal purine base with a layered crystal structure. Firstly, we identify and characterise the twin operator relating domains of Form I xanthine. We then solve the structure of a new xanthine polymorph, revealing that it is a polytype of Form I. Finally, interfaces between twin and polytype domains are visualised, whilst streaking in the diffraction patterns reveals the presence of planar disorder. Given these observations in the xanthine system, this work suggests that disorder on the nanoscale may be a commonly occurring phenomenon in layered organic molecular crystals.Layered crystal structures often exhibit twinning, planar disorder, or polytypes due to stacking variations. Here, the authors use multi-dimensional electron diffraction to uncover nanoscale disorder in xanthine, identifying a new polymorph and visualizing interfaces, suggesting such disorder may be prevalent in layered organic molecular crystals.
ISSN:2399-3669
DOI:10.1038/s42004-025-01729-2
Font:Materials Science Database