Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors

Halogen bonding can be exploited for the design of functional supramolecular materials, but heavier elements that are known to accept a halogen bond remain limited. Here, the authors demonstrate the formation of two-component cocrystals based on halogen bonds with phosphorus, arsenic and antimony.

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Autores principales: Katarina Lisac, Filip Topić, Mihails Arhangelskis, Sara Cepić, Patrick A. Julien, Christopher W. Nickels, Andrew J. Morris, Tomislav Friščić, Dominik Cinčić
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/15593c58585d4c8bb61290a07ccdc11a
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spelling oai:doaj.org-article:15593c58585d4c8bb61290a07ccdc11a2021-12-02T17:01:54ZHalogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors10.1038/s41467-018-07957-62041-1723https://doaj.org/article/15593c58585d4c8bb61290a07ccdc11a2019-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07957-6https://doaj.org/toc/2041-1723Halogen bonding can be exploited for the design of functional supramolecular materials, but heavier elements that are known to accept a halogen bond remain limited. Here, the authors demonstrate the formation of two-component cocrystals based on halogen bonds with phosphorus, arsenic and antimony.Katarina LisacFilip TopićMihails ArhangelskisSara CepićPatrick A. JulienChristopher W. NickelsAndrew J. MorrisTomislav FriščićDominik CinčićNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-10 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Katarina Lisac
Filip Topić
Mihails Arhangelskis
Sara Cepić
Patrick A. Julien
Christopher W. Nickels
Andrew J. Morris
Tomislav Friščić
Dominik Cinčić
Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
description Halogen bonding can be exploited for the design of functional supramolecular materials, but heavier elements that are known to accept a halogen bond remain limited. Here, the authors demonstrate the formation of two-component cocrystals based on halogen bonds with phosphorus, arsenic and antimony.
format article
author Katarina Lisac
Filip Topić
Mihails Arhangelskis
Sara Cepić
Patrick A. Julien
Christopher W. Nickels
Andrew J. Morris
Tomislav Friščić
Dominik Cinčić
author_facet Katarina Lisac
Filip Topić
Mihails Arhangelskis
Sara Cepić
Patrick A. Julien
Christopher W. Nickels
Andrew J. Morris
Tomislav Friščić
Dominik Cinčić
author_sort Katarina Lisac
title Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_short Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_full Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_fullStr Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_full_unstemmed Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_sort halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/15593c58585d4c8bb61290a07ccdc11a
work_keys_str_mv AT katarinalisac halogenbondedcocrystallizationwithphosphorusarsenicandantimonyacceptors
AT filiptopic halogenbondedcocrystallizationwithphosphorusarsenicandantimonyacceptors
AT mihailsarhangelskis halogenbondedcocrystallizationwithphosphorusarsenicandantimonyacceptors
AT saracepic halogenbondedcocrystallizationwithphosphorusarsenicandantimonyacceptors
AT patrickajulien halogenbondedcocrystallizationwithphosphorusarsenicandantimonyacceptors
AT christopherwnickels halogenbondedcocrystallizationwithphosphorusarsenicandantimonyacceptors
AT andrewjmorris halogenbondedcocrystallizationwithphosphorusarsenicandantimonyacceptors
AT tomislavfriscic halogenbondedcocrystallizationwithphosphorusarsenicandantimonyacceptors
AT dominikcincic halogenbondedcocrystallizationwithphosphorusarsenicandantimonyacceptors
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