Breaking the symmetry of high-entropy alloy surfaces for compressively strain-tuned oxygen reduction reaction
L
Lin He
M
Menggang Li
(School of Materials Science and Engineering)
L
Longyu Qiu
X
Xue Ren
F
Fenyang Tian
J
Jie Sheng
(Department of Chemistry)
Y
Yequn Liu
M
Mingchuan Luo
(Peking University , , ,)
X
Xin Zhou
Y
Yongsheng Yu
W
Weiwei Yang
S
Shaojun Guo
Article Details
Journal
Nature Communications
Volume / Issue
Vol. 16, Issue 1
Published
December 02, 2025
ISSN
2041-1723
Publisher
Nature Portfolio
Authors (12)
L
Lin He
M
Menggang Li
School of Materials Science and Engineering
L
Longyu Qiu
X
Xue Ren
F
Fenyang Tian
J
Jie Sheng
Department of Chemistry
Y
Yequn Liu
M
Mingchuan Luo
Peking University , , ,
X
Xin Zhou
Y
Yongsheng Yu
W
Weiwei Yang
S
Shaojun Guo
Related Articles from this Journal
Synthesis of adaptive 15N-nitrosyl-Co7 nanocluster for electrocatalytic C–H functionalization
Chao Wu, Xu Zhang et al.
Aug 2026
10.1038/s41467-026-76516-1
Pan-Ebolavirus nanoparticle vaccine provides protection in rodents from lethal infection by Zaire and Sudan viruses
Connor Weidle, Natalie Brunette et al.
Aug 2026
10.1038/s41467-026-76114-1
Multi-population GWAS meta-analysis identifies bladder cancer susceptibility loci and highlights genetic regulation of smoking-related risk
Ludmila Prokunina-Olsson, Oscar Florez-Vargas et al.
Aug 2026
10.1038/s41467-026-76157-4
Genome-wide annotation of human multi-nucleotide variants reveals widespread functional differences from single nucleotide variants
Weiwei Jin, Wen Cao et al.
Aug 2026
10.1038/s41467-026-76470-y
Allele-specific chromatin architecture shapes imprinted domains and coordinates a distal enhancer and antisense transcription at the mouse Mest-Copg2 domain
Bongmin Bae, Katherine Gu et al.
Aug 2026
10.1038/s41467-026-76506-3