制氢
电解
电解水
甲醇
碳纤维
材料科学
生物量(生态学)
化学工程
氢
分解水
芯(光纤)
催化作用
化学
电极
复合材料
复合数
有机化学
物理化学
工程类
地质学
海洋学
电解质
光催化
作者
Rajathsing Kalusulingam,Dileep B. Pawara,Krishnan Ravi,Selvam Mathi,Ankush V. Biradar,Tatiana N. Myasoedova,Jun Ho Shim
标识
DOI:10.1002/adsu.202500486
摘要
Abstract Bimetallic CoFe nanoparticles encapsulated in nitrogen‐doped graphitic carbon (CoFe@NGC) are synthesized via hydrochar polymerization of furfural followed by pyrolysis. The resulting core–shell heterostructures are obtained at pyrolysis temperatures of 500, 600, and 700 °C. Among them, CoFe@NGC‐700 exhibits optimal bifunctional electrocatalytic activity, delivering overpotentials of 1.47 V for the oxygen evolution reaction (OER), 1.37 V for the methanol oxidation reaction (MOR), and 0.151 V for the hydrogen evolution reaction (HER) at a current density of 10 mA cm −2 . In a two‐electrode configuration, CoFe@NGC‐700 achieved a low cell voltage of 1.66 V for overall water electrolysis (HER||OER) in 1.0 m KOH. Under methanol‐assisted electrolysis conditions (HER||MOR) in 1.0 m KOH + 1.0 m MeOH, the cell voltage further decreased to 1.45 V, with a Faradaic efficiency of 97%. These results highlight the potential of CoFe@NGC‐700 as a sustainable, high‐performance bifunctional electrocatalyst for energy‐efficient hydrogen production.
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