Skip to main content

NOTICE: Due to a lapse in annual appropriations, most of this website is not being updated. Learn more.

Form submissions will still be accepted but will not receive responses at this time. Sections of this site for programs using non-appropriated funds (such as NVLAP) or those that are excepted from the shutdown (such as CHIPS and NVD) will continue to be updated.

U.S. flag

An official website of the United States government

Official websites use .gov
A .gov website belongs to an official government organization in the United States.

Secure .gov websites use HTTPS
A lock ( ) or https:// means you’ve safely connected to the .gov website. Share sensitive information only on official, secure websites.

Superior Zero Thermal Expansion Dual-Phase Alloy via Boron-Migration Mediated Solid-State Reaction

Published

Author(s)

Chengyi Yu, Kun Lin, Xin Chen, Suihe Jiang, Yili Cao, Wenjie Li, Liang Chen, Ke An, Yan Chen, Dunji Yu, Kenichi Kato, Qinghua Zhang, Lin Gu, Li You, Xiaojun Kuang, Hui Wu, Qiang Li, Jinxia Deng, Xianran Xing
Citation
Nature Communications
Volume
14
Issue
1

Citation

Yu, C. , Lin, K. , Chen, X. , Jiang, S. , Cao, Y. , Li, W. , Chen, L. , An, K. , Chen, Y. , Yu, D. , Kato, K. , Zhang, Q. , Gu, L. , You, L. , Kuang, X. , Wu, H. , Li, Q. , Deng, J. and Xing, X. (2023), Superior Zero Thermal Expansion Dual-Phase Alloy via Boron-Migration Mediated Solid-State Reaction, Nature Communications, [online], https://dx.doi.org/10.1038/s41467-023-38929-0 (Accessed October 10, 2025)

Issues

If you have any questions about this publication or are having problems accessing it, please contact [email protected].

Created May 30, 2023, Updated January 23, 2024
Was this page helpful?