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Updated: May 20, 2025

The Preparation and Properties of Thermo-reversibly Cross-linked Rubber Via Diels-Alder Chemistry
Published on: August 25, 2016
Deconstruction of rubber via C-H amination and aza-Cope rearrangement
Sydney E Towell1, Maxim Ratushnyy1, Lauren S Cooke1
1Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.
Abstract:
Limited strategies exist for chemical recycling of commodity diene polymers, like those found in tyres1-3. Here we apply C-H amination and backbone rearrangement of polymers to deconstruct these materials into precursors for epoxy resins. Specifically, we develop a sulfur diimide reagent4,5 that enables up to about 35% allylic amination of diene polymers and rubber. Then, we apply the cationic 2-aza-Cope rearrangement to deconstruct aminated diene polymers. In a model system, we see molecular weight reduction from 58,100 to approximately 400 g mol-1, and aminated post-consumer rubber is deconstructed over 6 hours into soluble amine-functionalized polymers, which can be utilized to prepare epoxy thermosets with similar stiffnesses to commercial bisphenol A-derived resins6. Altogether, this work demonstrates the power of C-H amination and backbone rearrangement to enable chemical recycling of post-consumer materials.
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