谢广文   Professor

谢广文,教授,博士,长期从事纳米材料、微晶与非晶态材料研究与应用,在纳米材料表面改性、非晶态催化材料等领域取得了许多创新性成果。近年来在《燃料化学学报》、Chemical Engineering Journal、Carbon、Green Energy & Environment、Journal of Materials Chemistry A、Applied Surface Science、 ACS Applied Materials & Interfaces、Journal of Power Sources、Renewable Energy、Surface and Coatings Technolo...Detials

Nanoscale Raspberry-like Ni–Fe–Co–Mn–V high-entropy alloyelectrocatalysts: A pathway to ultrlow overpotential hydrogen evolution

Release time:2024-12-24  Hits:

  • Key Words:高熵合金;电催化;非贵金属;一步电沉积法
  • Abstract:High entropy alloys have garnered considerable attention within the realm of electrocatalysis. This study introduces a Ni-Fe-Co-Mn-V high entropy alloy (NFCMV-HEA) electrocatalyst fabricated on a nickel foam substrate via a facile and controlled one-step electrodeposition process. Remarkably, in a 1 M KOH electrolyte, the NFCMV-HEA catalyst exhibits exceptional catalytic efficiency, needing only a mere 7 mV overpotential for hydrogen evolution to reach a current density of 10 mA cm- 2 . Furthermore, the Tafel slope is relatively low at 147.5 mV dec- 1 , suggesting favorable kinetics. The catalyst maintains its performance stability even following an extensive 90 h durability assessment. Further elucidation reveals that the nano-scale resberry-like micro-convex surface structure of the electrodeposited HEA yields a profusion of electrochemically active sites, synergized with the distinctive cocktail effect intrinsic to HEAs, thereby endowing the catalyst with exceptional HER electrocatalytic prowess.
  • Volume:42
  • Issue:-
  • Translation or Not:no