电催化剂
氧还原反应
电化学
析氧
氟
材料科学
兴奋剂
氧气
氧还原
无机化学
氢
催化作用
化学
化学工程
燃料电池
反应机理
电化学能量转换
工作(物理)
氧化还原
纳米技术
电解水
反应条件
氢燃料
分解水
过渡金属
作者
Mostafa S. Eraky,Tara Buzdon,Yasser Ahmad,Kévin Lemoine,Pierre Bonnet,Marc Dubois
摘要
generation of catalytically active oxide, hydroxide, or oxyhydroxide species. These effects accelerate reaction kinetics in electrochemical processes. Fluorine incorporation may also improve electrical conductivity by increasing charge-carrier density and controlling electronic states near the Fermi level, while enhancing electrolyte penetration, reactant diffusion, and effective gas release. This review analyzes more than 80 representative studies and provides a systematic overview of fluorination strategies across three major classes of materials: (i) carbon-based materials as metal-free electrocatalysts; (ii) carbon-based conductive supports for electocatalysts; and (iii) non-carbonaceous materials including metal sulfides, oxides, ferro-oxides, perovskites, and layered hydroxides. For each category, fluorination conditions, fluorine incorporation modes, and key governing factors are discussed alongside the resulting structural and electronic modifications. Finally, future opportunities in controlled fluorination and defluorination are highlighted as promising routes for surface-selective modification, defect engineering, and active-site generation, positioning fluorination as a versatile platform for rational electrocatalyst design and next-generation electrochemical energy technologies.
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