Polyethylene Incorporating Diels‐Alder Comonomers: A “Trojan Horse” Strategy for Chemically Recyclable Polyolefins
Polyolefins with periodic unsaturation in the backbone chain are sought after for synthesizing chemically recyclable polymers or telechelic polyolefin macromonomers. Here we introduce a bottom‐up synthesis of unsaturated high‐density polyethylene (HDPE) via copolymerization of ethylene with dimethyl 7‐oxabicyclo[2.2.1]hepta‐2,5‐diene‐3,5‐dicarboxylate followed by post‐polymerization retro‐Diels–Alder to unveil hidden double bonds in the polymer backbone. The incorporation of this “Trojan Horse” comonomer was varied and a series of unsaturated HDPE polymers with block lengths of 1.2, 1.9, and 3.5 kDa between double bonds was synthesized. Cross metathesis of unsaturated HDPE samples with 2‐hydroxyethyl acrylate yielded telechelic ester terminated PE macromonomers suitable for the preparation of ester‐linked PE. These materials were depolymerized and repolymerized, making them suitable candidates for chemical recycling. The ester‐linked PE displayed thermal and mechanical properties comparable to commercial HDPE.
Top-30
Journals
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Macromolecules
9 publications, 16.36%
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Angewandte Chemie - International Edition
9 publications, 16.36%
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Angewandte Chemie
8 publications, 14.55%
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5 publications, 9.09%
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2 publications, 3.64%
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Polymer
2 publications, 3.64%
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Science China Chemistry
2 publications, 3.64%
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Nature Communications
2 publications, 3.64%
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Chemical Reviews
2 publications, 3.64%
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Synfacts
1 publication, 1.82%
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Advanced Science
1 publication, 1.82%
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Energy & Fuels
1 publication, 1.82%
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Giant
1 publication, 1.82%
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Chemical Science
1 publication, 1.82%
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Organic Letters
1 publication, 1.82%
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Chinese Journal of Polymer Science (English Edition)
1 publication, 1.82%
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Nature Sustainability
1 publication, 1.82%
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Nature Catalysis
1 publication, 1.82%
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ACS Sustainable Chemistry and Engineering
1 publication, 1.82%
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Advanced Sustainable Systems
1 publication, 1.82%
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Russian Chemical Reviews
1 publication, 1.82%
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Precision Chemistry
1 publication, 1.82%
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Publishers
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Wiley
21 publications, 38.18%
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American Chemical Society (ACS)
20 publications, 36.36%
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Springer Nature
7 publications, 12.73%
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Elsevier
3 publications, 5.45%
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Georg Thieme Verlag KG
1 publication, 1.82%
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Research Square Platform LLC
1 publication, 1.82%
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Royal Society of Chemistry (RSC)
1 publication, 1.82%
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Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
1 publication, 1.82%
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- We do not take into account publications without a DOI.
- Statistics recalculated weekly.