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Conglomerate Crystallization in the Cambridge Structural Database (2020–2021)

Walsh, Mark P.; Barclay, James A.; Begg, Callum S.; Xuan, Jinyi; Kitching, Matthew O.

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Authors

Mark P. Walsh

James Barclay james.a.barclay@durham.ac.uk
Postdoctoral Research Associate

Callum Begg callum.s.begg@durham.ac.uk
PGR Student Doctor of Philosophy

Jinyi Xuan jinyi.xuan@durham.ac.uk
PGR Student Doctor of Philosophy



Abstract

Conglomerate crystals are materials capable of undergoing spontaneous resolution and were responsible for the discovery of molecular chirality. Their relevance to modern chemical and crystallographic sciences has been hindered by the difficulty in identifying and searching materials with this characteristic ability to spontaneously bias their own enantioenrichment. With the release of the November 2021 distribution of the Cambridge Structural Database (CSD) (version 5.43), a fresh quantity of chiral conglomerate crystals is expected to have been published in the CSD without identification. Indeed, no crystals in the CSD have been identified as a spontaneously resolving conglomerate crystal in their crystallographic information file since the 2019 release, despite the deposition of over 108,000 new crystal structures into the database over the same time period. A manual inspection of crystals deposited between 2020 and 2021 was conducted to identify 343 new chiral materials which exhibit conglomerate crystallization behavior. It is hoped that the continued manual curation of this list will aid those in the crystallographic and synthetic communities to study and exploit this spontaneous enantioenrichment behavior.

Citation

Walsh, M. P., Barclay, J. A., Begg, C. S., Xuan, J., & Kitching, M. O. (2023). Conglomerate Crystallization in the Cambridge Structural Database (2020–2021). Crystal Growth and Design, 23(4), 2837-2837. https://doi.org/10.1021/acs.cgd.3c00019

Journal Article Type Article
Online Publication Date Mar 22, 2023
Publication Date 2023
Deposit Date May 10, 2023
Publicly Available Date May 10, 2023
Journal Crystal Growth & Design
Print ISSN 1528-7483
Electronic ISSN 1528-7505
Publisher American Chemical Society
Peer Reviewed Peer Reviewed
Volume 23
Issue 4
Pages 2837-2837
DOI https://doi.org/10.1021/acs.cgd.3c00019

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