Strain‐Tunable Thermal Conductivity in Largely Amorphous Polyolefin Fibers via Alignment‐Induced Vibrational Delocalization

D Duo Xu (National Laboratory of Solid State Microstructures, Jiangsu Key Laboratory of Artificial Functional Materials, College of Engineering and Applied Sciences) B Buxuan Li Y You Lyu (Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge MA USA) V Vivian J. Santamaria‐Garcia (Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge MA USA) Y Yuan Zhu S Svetlana V. Boriskina

Abstract

ABSTRACT Developing fast, reversible, and recyclable thermal switches is essential to advance adaptive thermal management. Here, we present a strain‐tunable thermal switch based on largely amorphous olefin block copolymer (OBC) fibers, achieving a continuous switching ratio above 2 over 1000 cycles, as well as very short response times below 0.22 s. Using Raman spectroscopy, we quantify vibrational delocalization with increasing strain and demonstrate its direct connection to the observed thermal conductivity changes. We show that unlike prior assumptions linking propagating heat carriers primarily to crystalline domains, alignment in amorphous systems can enable phonon‐like modes that dominate transport. To our best knowledge, this work is the first to experimentally probe vibrational delocalization using Raman spectroscopy and to demonstrate that alignment alone can govern the dominant carrier in disordered polymers. These findings establish design strategies for fatigue‐resistant, high‐performance, and recyclable polymer thermal switches for advanced thermal energy transport applications.

Article Details

Volume / Issue Vol. 38, Issue 26
Published May 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (6)

D

Duo Xu

National Laboratory of Solid State Microstructures, Jiangsu Key Laboratory of Artificial Functional Materials, College of Engineering and Applied Sciences

B

Buxuan Li

Y

You Lyu

Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge MA USA

V

Vivian J. Santamaria‐Garcia

Department of Mechanical Engineering Massachusetts Institute of Technology Cambridge MA USA

Y

Yuan Zhu

S

Svetlana V. Boriskina