arrow
Return

Entanglements enable circular engineering plastics

delete2026-07-22
delete0
PRE
AI
S
Shuai Du
马
马松琪 (Songqi Ma) *
DOI:10.1038/s41563-026-02665-9delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
An entanglement-dominated design strategy combines dense physical chain entanglements with sparse trigger-cleavable covalent crosslinks. This strategy enables high-performance thermosets with generation-invariant regeneration, opening an avenue for circular engineering plastics.

Journal

Nature Materials cover
Nature Materials
IF:
38.5
Papers:
6.8K
Citations:
11.5W

Organization

J
jiangnan university
Scholars:
8.8K
Papers: 2.4K
Citations: 0
Cited Papers

Cited Papers

Degradable thermosets via orthogonal polymerizations of a single monomer
errNATURE
IF48.5
err2025-01-29
err2
PREAI
errDreiling, Reagan J.; Huynh, Kathleen
errShare
errSave
Chain entanglements enable regeneration of high-performance thermosets
err2026-06-15
err0
PREAI
errZhenchuang Xu; Edgar B. Mejia; Tyler C. Price; Ignacio Arretche; Shuyi Zhang; Ruishi Lei; Valerie Chen; Hannah Liu; Shaofeng Huang; Boran Chen; Sameh H. Tawfick; Jeremiah A. Johnson; Nancy R. Sottos; Jeffrey S. Moore
errShare
errSave
Silica-Like Malleable Materials from Permanent Organic Networks
err2011-11-18
err0
PREAI
errDamien Montarnal; Mathieu Capelot; François Tournilhac; Ludwik Leibler
errShare
errSave
Tuning Entanglement Molecular Weights with Ultrahigh-Molecular-Weight Polystyrenics
err2025-07-29
err0
PREAI
errJoshua D. Marquez; Kevin A. Stewart; Kaden C. Stevens; Benjamin J. Ryder; Thi H. Le; Nathan B. Wei; Won J. Choi; Yong Huang; Brent S. Sumerlin; Austin M. Evans
errShare
errSave
Covalent Adaptable Networks (CANS): A Unique Paradigm in Cross-Linked Polymers
err2010-02-23
err943
errOAAI
errKloxin, Christopher J.; Scott, Timothy F.; Adzima, Brian J.; Bowman, Christopher N.
errShare
errSave
no more