Chemically Recyclable and Tunable Polyolefin‐Like Multiblock Copolymer Adhesives

Y Yucheng Zhao E Ethan C. Quinn M Megan E. Battson (School of Materials Science and Engineering Colorado State University Fort Collins CO 80523 USA) E Emma M. Rettner (School of Materials Science and Engineering Colorado State University Fort Collins CO 80523 USA) J Joel Miscall N Nicholas A. Rorrer E Eugene Y.‐X. Chen (Department of Chemistry Colorado State University Fort Collins Colorado USA) G Garret M. Miyake (Department of Chemistry Colorado State University Center Ave Fort Collins Colorado 80523 USA)

Abstract

AbstractAdhesives are important in creating multilayer products, such as in packaging and construction. Most current hot‐melt adhesives such as poly(ethylene‐co‐vinyl acetate) (EVA) and polyurethanes lack chemical recyclability and do not easily de‐bond, complicating recycling. Here, we achieved tunable adhesive properties of chemically recyclable polyolefin‐like multiblock copolymers through regulating the incorporation of crystalline hard blocks, amorphous soft blocks, and ester content highlighted by adhesive strengths up to 6.80 MPa. We further demonstrated applications of these adhesives in multi‐layer films and showed that the adhesives can be readily de‐bonded, recovered, and chemically recycled. Overall, this study into structure–property relationships, including effects of crystallinity, soft‐block incorporation, and ester content of the multiblock copolymers on adhesive properties, has resulted in a modular hot‐melt adhesive platform that exhibits chemical recyclability for virgin‐quality adhesive re‐generation, reprocessability for repeated reuse of the recovered adhesive, and tunability for designing adhesives with a wide range of low to high (up to ∼80% stronger than EVA) adhesion strengths.

Article Details

Volume / Issue Vol. 64, Issue 43
Published October 20, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

Y

Yucheng Zhao

E

Ethan C. Quinn

M

Megan E. Battson

School of Materials Science and Engineering Colorado State University Fort Collins CO 80523 USA

E

Emma M. Rettner

School of Materials Science and Engineering Colorado State University Fort Collins CO 80523 USA

J

Joel Miscall

N

Nicholas A. Rorrer

E

Eugene Y.‐X. Chen

Department of Chemistry Colorado State University Fort Collins Colorado USA

G

Garret M. Miyake

Department of Chemistry Colorado State University Center Ave Fort Collins Colorado 80523 USA