Sub-angstrom strain in high-entropy intermetallic boosts the oxygen reduction reaction in fuel cell cathodes
Abstract
Abstract The strain effect of high-entropy intermetallic (HEI) catalysts on oxygen reduction reaction (ORR) performance remains largely unexplored, primarily due to the significant challenges associated with characterizing and calculating the intricate local coordination environments. Here, we design a nitrogen (N)-doped L10-ordered PtCoNiFeCu intermetallic catalyst supported on Ketjenblack carbon (N-HEI/KB), and reveal the origin of the sub-angstrom strain in N-HEI and its impact on ORR performance by combining atomic-scale characterization and theoretical calculations. The synergistic interplay of the sub-angstrom strain, the pinning effect of metal-N bonds, and the high-entropy effect contribute to the competitive stability of N-HEI/KB catalysts, providing high current density of 1388 mA cm-2 at 0.7 V after 90,000 cycles even under harsh heavy-duty vehicle conditions. These findings broaden the avenues for designing high-performance high-entropy intermetallic cathode electrocatalysts.
Article Details
Authors (13)
Xueru Zhao
Chemistry Department
Hao Cheng
Lijun Wu
Qi Zhang
Xiaobo Chen
Nebojsa Marinkovic
Chenzhao Li
Sha Tan
Hangzhou Institute of Advanced Studies, Zhejiang Normal University 1 , 1108 Gengwen Road, Hangzhou 311231, Zhejiang Province,
Enyuan Hu
Chemistry Division
Lu Ma
Yimei Zhu
Condensed Matter Physics and Materials Science Department, Brookhaven National Laboratory, Upton, NY, USA.
Jian Xie
Department of Pathology, Microbiology and Immunology, University of Nebraska Medical Center
Kotaro Sasaki
Chemistry Department