Suppressing catalyst poisoning in the carbodiimide-fueled reaction cycle.


Journal

Chemical science
ISSN: 2041-6520
Titre abrégé: Chem Sci
Pays: England
ID NLM: 101545951

Informations de publication

Date de publication:
15 Nov 2023
Historique:
received: 16 08 2023
accepted: 16 10 2023
medline: 29 11 2023
pubmed: 29 11 2023
entrez: 29 11 2023
Statut: epublish

Résumé

In biology, cells regulate the function of molecules using catalytic reaction cycles that convert reagents with high chemical potential (fuel) to waste molecules. Inspired by biology, synthetic analogs of such chemical reaction cycles have been devised, and a widely used catalytic reaction cycle uses carboxylates as catalysts to accelerate the hydration of carbodiimides. The cycle is versatile and easy to use, so it is widely applied to regulate motors, pumps, self-assembly, and phase separation. However, the cycle suffers from side reactions, especially the formation of

Identifiants

pubmed: 38020366
doi: 10.1039/d3sc04281b
pii: d3sc04281b
pmc: PMC10646924
doi:

Types de publication

Journal Article

Langues

eng

Pagination

12653-12660

Informations de copyright

This journal is © The Royal Society of Chemistry.

Déclaration de conflit d'intérêts

The authors declare no competing financial interest.

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Auteurs

Xiaoyao Chen (X)

Department of Chemistry, School of Natural Science, Technical University of Munich Lichtenbergstrasse 4 85748 Garching bei München Germany job.boekhoven@tum.de.

Héctor Soria-Carrera (H)

Department of Chemistry, School of Natural Science, Technical University of Munich Lichtenbergstrasse 4 85748 Garching bei München Germany job.boekhoven@tum.de.

Oleksii Zozulia (O)

Department of Chemistry, School of Natural Science, Technical University of Munich Lichtenbergstrasse 4 85748 Garching bei München Germany job.boekhoven@tum.de.

Job Boekhoven (J)

Department of Chemistry, School of Natural Science, Technical University of Munich Lichtenbergstrasse 4 85748 Garching bei München Germany job.boekhoven@tum.de.

Classifications MeSH