Electrocatalysts for Energy ConversionHigh Entropy Alloys StudiesSubcritical and Supercritical Water Processes

Panyan Chen, Wanwan Wu, Heng Bian, Weiwei Li, Xin-Sheng Zhao, Lu Wei

2026.5.28Journal of Electrochemistry

DOI: 10.61558/2993-074x.3608

Abstract

High-entropy oxides (HEOs) present significant scientific challenges in both design and synthesis due to their multielement and high-entropy nature, which involves complex combinations of multiple metal cations and oxygen anions, typically arranged in equimolar ratios to achieve structural stability. Herein, one-dimensional (Co,Ni,Mn,Cu,Zn)O high-entropy oxide nanotubes (HEO-NTs) are fabricated by means of a gradient electrospinning strategy with a tailored polyvinyl alcohol (PVA) molecular weight distribution and controlled pyrolysis. Benefiting from the HEO features and the synergistic effect of multicomponent sites, the as-synthesized (Co,Ni,Mn,Cu,Zn)O HEO-NTs exhibit exceptional bifunctional electrocatalytic activity for the oxygen evolution and hydrazine oxidation reactions (OER/HzOR). This study offers new insight into the design of HEO-NTs and unveiling the multicomponent synergy on HEOs for enhanced electrocatalytic activities of OER and HzOR.

Citation format

CHEN, Panyan, et al. (Co,ni,mn,cu,zn)o high-entropy oxide nanotubes as efficient bifunctional electrocatalyst for oxygen evolution and hydrazine oxidation reactions. Journal of Electrochemistry, 2026, 32(5).