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Manganese-catalyzed synthesis of polyketones using hydrogen-borrowing approach.

Kulyabin, Pavel S.; Magdysyuk, Oxana V.; Naden, Aaron B.; Dawson, Daniel M.; Pancholi, Ketan; Walker, Matthew; Vassalli, Massimo; Kumar, Amit

Authors

Pavel S. Kulyabin

Oxana V. Magdysyuk

Aaron B. Naden

Daniel M. Dawson

Matthew Walker

Massimo Vassalli

Amit Kumar



Abstract

We report here a method of making polyketones from the coupling of diketones and diols using a manganese pincer complex. The methodology allows us to access various polyketones (polyarylalkylketone) containing aryl, alkyl, and ether functionalities, bridging the gap between the two classes of commercially available polyketones: aliphatic polyketones and polyaryletherketones. Using this methodology, 12 polyketones have been synthesized and characterized using various analytical techniques to understand their chemical, physical, morphological, and mechanical properties. Based on previous reports and our studies, we suggest that the polymerization occurs via a hydrogen-borrowing mechanism that involves the dehydrogenation of diols to dialdehyde followed by aldol condensation of dialdehyde with diketones to form chalcone derivatives and their subsequent hydrogenation to form polyarylalkylketones.

Citation

KULYABIN, P.S., MAGDYSYUK, O.V., NADEN, A.B., DAWSON, D.M., PANCHOLI, K., WALKER, M., VASSALLI, M. and KUMAR, A. 2024. Manganese-catalyzed synthesis of polyketones using hydrogen-borrowing approach. ACS catalysis [online], 14(14), pages 10624-10634. Available from: https://doi.org/10.1021/acscatal.4c03019

Journal Article Type Article
Acceptance Date Jun 11, 2024
Online Publication Date Jun 28, 2024
Publication Date Jul 19, 2024
Deposit Date Jul 5, 2024
Publicly Available Date Jul 18, 2024
Journal ACS catalysis
Electronic ISSN 2155-5435
Publisher American Chemical Society
Peer Reviewed Peer Reviewed
Volume 14
Issue 14
Pages 10624-10634
DOI https://doi.org/10.1021/acscatal.4c03019
Keywords Manganese; Polyketones; Diketones; Dehdrogenation; Hydrogen-borrowing
Public URL https://rgu-repository.worktribe.com/output/2403855
Related Public URLs https://rgu-repository.worktribe.com/output/2213035 (Preprint)
Additional Information This article has been published with separate supporting information. This supporting information has been incorporated into a single file on this repository and can be found at the end of the file associated with this output.

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