Enabling a Diversity-Oriented Catalytic Atom Looping of a Biobased Polycarbonate

dc.contributor.author
Lanaro, Enrico
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Senthamarai, Thirusangumurugan
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Hashmi, Stephen K.
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Kleij, Arjan W.
dc.date.accessioned
2025-11-06T08:38:52Z
dc.date.available
2025-11-06T08:38:52Z
dc.date.issued
2025-10-06
dc.identifier.uri
http://hdl.handle.net/2072/488524
dc.description.abstract
Herein, it is demonstrated that biobased poly(menthene carbonate) (PMC) can be conveniently used to enable catalysis-promoted atom looping thereby creating functionalized synthons and new types of repolymerizable monomers. The biobased polycarbonate undergoes chemoselective depolymerization in the presence of a bicyclic guanidinium providing under distinct reaction conditions and concentrations high-yield and selective access to either menthene oxide (MO), menthene carbonate (MC), or menthene diol (MD). These latter depolymerization products further enable the valorization of the original polymer atoms into several functionalized, partially biobased building blocks by integrating a monomer-and-molecular loop approach. As a proof-of-principle, four distinct scaffolds were converted into novel (bifunctional) monomers with potential to create a wider series of macromolecules. This work exemplifies a unique and holistic catalytic reuse of polymer atoms accommodating an on-demand preparation of fine-chemical precursors, repolymerizable monomers, and new monomer precursor designs.
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dc.format.extent
7 p.
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dc.language.iso
eng
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dc.publisher
Chemistry Europe
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dc.rights
Attribution 4.0 International
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http://creativecommons.org/licenses/by/4.0/
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dc.source
RECERCAT (Dipòsit de la Recerca de Catalunya)
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Química
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dc.title
Enabling a Diversity-Oriented Catalytic Atom Looping of a Biobased Polycarbonate
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dc.type
info:eu-repo/semantics/article
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dc.subject.udc
54
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dc.description.version
info:eu-repo/semantics/publishedVersion
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dc.embargo.terms
cap
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dc.relation.projectID
CERCA Program/Generalitat de Catalunya
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ICREA Foundation
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MICINN (PID2023-149295NB-I00 and Severo Ochoa Excellence Accreditation 2020–2023 CEX2019-000925-S),
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AGAUR (2021-SGR-00853)
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T.S. is thankful to the European Union's Horizon 2020 research and innovation program for a Marie Skłodowska-Curie grant (101110356)
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E.L. acknowledges financial support from the European Union (Marie Skłodowska-Curie Grant Agreement No. 101073223, D-Carbonize project)
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dc.identifier.doi
https://doi.org/10.1002/cssc.202501905
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dc.rights.accessLevel
info:eu-repo/semantics/openAccess


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