Entropy-Enabled Stabilization and Activity Enhancement of Ruthenium Oxides for Acidic Oxygen Evolution

X Xue Yao (Department of Materials Science and Engineering) L Linke Huang (Department of Materials Science and Engineering) Y Yutong Liu (Department of Materials Science and Engineering) R Robert Black (Clean Energy Innovation Research Center) A Alex Whittingham (Clean Energy Innovation Research Center) Z Zahra Teimouri (Department of Chemical Engineering) D Drew Higgins (Department of Chemical Engineering) J Jason Hattrick-Simpers (Department of Materials Science and Engineering) C Chandra Veer Singh (Department of Materials Science and Engineering)

Article Details

Volume / Issue Vol. 148, Issue 24
Published June 24, 2026
Pages 25249-25257
ISSN 0002-7863
Publisher American Chemical Society

Journal Info

Journal of the American Chemical Society

American Chemical Society

ISSN: 0002-7863 Physical Sciences

Authors (9)

X

Xue Yao

Department of Materials Science and Engineering

L

Linke Huang

Department of Materials Science and Engineering

Y

Yutong Liu

Department of Materials Science and Engineering

R

Robert Black

Clean Energy Innovation Research Center

A

Alex Whittingham

Clean Energy Innovation Research Center

Z

Zahra Teimouri

Department of Chemical Engineering

D

Drew Higgins

Department of Chemical Engineering

J

Jason Hattrick-Simpers

Department of Materials Science and Engineering

C

Chandra Veer Singh

Department of Materials Science and Engineering