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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >CoP as an Acid-Stable Active Electrocatalyst for the Hydrogen-Evolution Reaction: Electrochemical Synthesis, Interfacial Characterization and Performance Evaluation
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CoP as an Acid-Stable Active Electrocatalyst for the Hydrogen-Evolution Reaction: Electrochemical Synthesis, Interfacial Characterization and Performance Evaluation

机译:CoP作为氢演化反应的酸稳定活性电催化剂:电化学合成,界面表征和性能评估

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摘要

Films of CoP have been electrochemically synthesized, characterized, and evaluated for performance as a catalyst for the hydrogen-evolution reaction (HER). The film was synthesized by cathodic deposition from a boric acid solution of Co2+ and H2PO2 on copper substrates followed by operando remediation of exogenous contaminants. The films were characterized structurally and compositionally by scanning-electron microscopy, energy-dispersive X-ray spectroscopy, X-ray photoelectron spectroscopy, and Raman spectrophotometry. The catalytic activity was evaluated by cyclic voltammetry and chronopotentiometry. Surface characterization prior to electrocatalysis indicated that the film consisted of micrometer-sized spherical clusters located randomly and loosely on a slightly roughened surface. The composition of both the clusters and surface consisted of cobalt in the metallic, phosphide, and amorphous-oxide forms (CoO.Co2O3) and of phosphorus as phosphide and orthophosphate. The orthophosphate species, produced by air-oxidation, were eliminated upon HER electrocatalysis in sulfuric acid. The operando film purification yielded a functional electrocatalyst with a Co:P stoichiometric ratio of 1:1. After the HER, the surface was densely packed with micrometer-sized, mesa-like particles whose tops were flat and smooth. The CoP eletrodeposit exhibited an 85 mV overvoltage (eta) for the HER at a current density of 10 mA cm(2) and was stable under operation in highly acidic solution, with an increase in eta of 18 mV after 24 h of continuous operation. The comparative HER catalytic performance of CoP, film or nanoparticles, is as follows: eta(Pt) < eta(CoP) film = eta(CoP) NP, eta(Ni2P) < eta(CoSe2) < eta(MoS2) < eta(MoSe2).
机译:CoP薄膜已经过电化学合成,表征和性能评估,可作为氢演化反应(HER)的催化剂。该膜是通过在铜基板上从Co2 +和H2PO2的硼酸溶液中进行阴极沉积,然后对外源污染物进行操作修复而合成的。通过扫描电子显微镜,能量分散X射线光谱,X射线光电子光谱和拉曼分光光度法对膜进行结构和组成表征。通过循环伏安法和计时电位法评估催化活性。电催化之前的表面表征表明该膜由微米级的球形簇组成,该簇随机且疏松地位于略微粗糙的表面上。团簇和表面的组成均由金属,磷化物和无定形氧化物形式的钴(CoO.Co2O3)以及磷的磷化物和正磷酸盐组成。在硫酸中进行HER电催化时,消除了由空气氧化产生的正磷酸盐。操作膜纯化产生具有Co:P化学计量比为1:1的功能性电催化剂。 HER后,表面被微米级的台面状颗粒密实地堆积,其顶部平坦而光滑。 CoP电沉积在10 mA cm(2)的电流密度下对HER表现出85 mV的过电压(eta),并且在高酸性溶液中运行时稳定,在连续运行24小时后,eta值增加了18 mV。 CoP,薄膜或纳米颗粒的HER催化性能比较如下:eta(Pt)

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