MRS Meetings and Events

 

SF03.11.02 2023 MRS Spring Meeting

High-Performance and Flexible Thermal Interfaces Based on Self-Assembled Boron Arsenide

When and Where

Apr 13, 2023
8:30am - 8:45am

Marriott Marquis, B2 Level, Golden Gate A

Presenter

Co-Author(s)

Ying Cui1,Zihao Qin1,Huan Wu1,Man Li1,Yongjie Hu1

University of California, Los Angeles1

Abstract

Ying Cui1,Zihao Qin1,Huan Wu1,Man Li1,Yongjie Hu1

University of California, Los Angeles1
Thermal management is the most critical technology challenge for modern electronics. Recent key materials innovation focuses on developing advanced thermal interface of electronic packaging for achieving efficient heat dissipation. Here, for the first time we report a record-high performance thermal interface beyond the current state of the art, based on self-assembled manufacturing of cubic boron arsenide. The self-assembly of BAs exhibits highly desirable characteristics of high thermal conductivity up to 21 W/mK and excellent elastic compliance similar to that of soft biological tissues down to 100 kPa through the rational design of BAs microcrystals in polymer composite. In addition, the s-BAs demonstrates high flexibility and preserves the high conductivity over at least 500 bending cycles, opening up new application opportunities for flexible thermal cooling. Moreover, we demonstrated device integration with power LEDs and measured a superior cooling performance of BAs beyond the current state of the art, by up to 45 °C reduction in the hot spot temperature. Together, this study demonstrates scalable manufacturing of a new generation of energy-efficient and flexible thermal interface that holds great promise for advanced thermal management of future integrated circuits and emerging applications such as wearable electronics and soft robotics.

Keywords

thermal conductivity

Symposium Organizers

Yongjie Hu, University of California, Los Angeles
Lucas Lindsay, Oak Ridge National Laboratory
Amy Marconnet, Purdue University
Ivana Savic, Tyndall National Institute

Publishing Alliance

MRS publishes with Springer Nature