September 2026

Journal

Polyolefin blends with co-continuous architectures enabled by dynamic covalent crosslinking

By:
Neidhart, Eliza; Ribet, Stephanie; Lee, Taehyun; Kearney, Logan T; Bustillo, Karen; Dailing, Eric; Hua, Mutian; Ophus, Colin; Fricke, Sophia; Song, Ah-Young; Reimer, Jeffrey; Alexanian, Erik; Atkin, Joanna; Helms, Brett; Leibfarth, Frank
Journal Name:
Science Advances
Page Number:
1-11
Volume:
12
Issue Number:
20
Publication Date:
September 22, 2026
View DOI Listing:
https://doi.org/10.1126/sciadv.aee2328

Abstract

Blending polymers produces brittle materials due to macrophase separation and poor interfacial adhesion, which is exemplified by mixtures of polyolefins. This presents a formidable challenge for the mechanical recycling of mixed plastic waste. Here, we demonstrate that dynamic covalent crosslinking of immiscible polyolefin blends creates macrophase separated co-continuous architectures, yet they display excellent mechanical properties, which challenges the conventional wisdom regarding morphology-property relationships in polymer blend compatibilization. We find that the position and orientation of dynamic crosslinks and their influence on crystallinity are key to understanding the structure-morphology-property relationships. In particular, high-resolution microscopy imaging reveals alignment of crystallite planes with strong orientational preference, particularly at polymer-polymer interfaces, which contribute to material performance. We further demonstrate that changes in crosslinker density and valency allow the properties of binary and ternary polyolefin blends to be tuned in a modular fashion.


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