Insights into the combined effect of coupled CuFeO2/Fe3O4 heterostructured hybrid electrocatalyst for efficient hydrogen evolution in water splitting

被引:0
|
作者
Kumar, Sandhya Anand [1 ]
Kennedy, L. John [1 ]
机构
[1] Vellore Inst Technol VIT, Sch Adv Sci, Dept Phys, Chennai Campus, Chennai 600127, India
关键词
Electrocatalysts; Nanocomposite; Hydrogen evolution reaction; Catalytic active sites; Metal oxides; BIFUNCTIONAL ELECTROCATALYSTS; HYDROTHERMAL SYNTHESIS; COMBUSTION SYNTHESIS; OXYGEN; FE3O4; NANOPARTICLES; REDUCTION; NONSTOICHIOMETRY; NANOCOMPOSITE; GENERATION;
D O I
10.1016/j.ijhydene.2024.11.310
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Hydrogen production via water electrolysis offers a promising route to sustainable energy, but the slow kinetics of the hydrogen evolution reaction (HER) demands efficient, cost-effective electrocatalysts to replace noble metals like platinum. We report a novel CuFeO2/Fe3O4 (CD-SF) nanocomposite synthesized via microwave combustion featuring, heterostructure characterized by X-ray diffraction, X-ray photon spectroscopy, FESEM, and HRTEM. Electrochemical tests of CD-SF on nickel foam in 1 M KOH with Pt coil (Pt-CE) and graphite rod (GrCE) counter electrodes show outstanding HER catalytic activity. CD-SF(Pt-CE) achieved a low overpotential of 64.6 mV at current density 10 mA cm- 2 , with an exchange current density of 6.08 mA cm- 2 , while CD-SF(Gr-CE) reached 94.6 mV at 10 mA cm- 2 with an exchange current density of 8.24 mA cm- 2 , outperforming many nonnoble metal catalysts. Both catalysts exhibited high stability over 12 h of continuous hydrogen generation. This study highlights CD-SF's potential for large-scale industrial water splitting applications.
引用
收藏
页码:1101 / 1118
页数:18
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