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

BN Promoted Heterojunction Ni-Fe-P/BN Electrocatalyst with Excellent Performance of Oxygen Evolution Reaction

Release time:2024-12-24  Hits:

  • Key Words:GRAPHENE OXIDE; MASS-TRANSPORT; EFFICIENT; NANOPARTICLES; CATALYST; FOAM
  • Abstract:In this research, we have successfully synthesized a Ni-Fe-P/h-BN catalyst through a simple one-step electrodeposition method for efficient water splitting in a KOH electrolytic cell. Our prepared Ni-Fe-P/h-BN catalyst showcased exceptional electrocatalytic activity for the oxygen evolution reaction (OER), with an overpotential of only 210 mV at a current density of 10 mA cm(-2). Notably, this value is significantly lower compared to 248 mV observed for Ni-Fe-P/Fe without h-BN and also superior to the results reported for other catalysts. Furthermore, through the ball milling, we further enhanced the OER performance of the catalyst, achieving an impressive overpotential of 200 mV at the same density of 10 mA cm(-2). The exceptional OER performance displayed by the Ni-Fe-P/h-BN composite is attributable to the synergistic effects of Ni-Fe-P and h-BN. Furthermore, the introduction of a heterojunction between h-BN and Ni-Fe-P serves to further enhance the OER capability of the catalyst. This investigation introduces a straightforward and effective approach for fabricating cost-effective and high-performance electrocatalysts intended for water electrolysis.
  • Volume:2024
  • Issue:
  • Translation or Not:no