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A Superaerophobic Bimetallic Selenides Heterostructure for Efficient Industrial-Level Oxygen Evolution at Ultra-High Current Densities

机译:超高速密度高效工业水平氧气进化的超高速密度

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摘要

Abstract Cost-effective and stable electrocatalysts with ultra-high current densities for electrochemical oxygen evolution reaction (OER) are critical to the energy crisis and environmental pollution. Herein, we report a superaerophobic three dimensional (3D) heterostructured nanowrinkles of bimetallic selenides consisting of crystalline NiSe2 and NiFe2Se4 grown on NiFe alloy (NiSe2/NiFe2Se4@NiFe) prepared by a thermal selenization procedure. In this unique 3D heterostructure, numerous nanowrinkles of NiSe2/NiFe2Se4 hybrid with a thickness of ~ 100 nm are grown on NiFe alloy in a uniform manner. Profiting by the large active surface area and high electronic conductivity, the superaerophobic NiSe2/NiFe2Se4@NiFe heterostructure exhibits excellent electrocatalytic activity and durability towards OER in alkaline media, outputting the low potentials of 1.53 and 1.54 V to achieve ultra-high current densities of 500 and 1000 mA cm−2, respectively, which is among the most active Ni/Fe-based selenides, and even superior to the benchmark Ir/C catalyst. The in-situ derived FeOOH and NiOOH species from NiSe2/NiFe2Se4@NiFe are deemed to be efficient active sites for OER.
机译:与电化学析氧反应(OER)的超高电流密度摘要性价比和稳定的电催化剂是能源危机和环境污染的关键。此,我们报告一个superaerophobic三维(3D)异质结构上由通过热硒化方法制备NiFe合金(NiSe2 / NiFe2Se4 @的NiFe)结晶NiSe2和NiFe2Se4生长的双金属硒化物的nanowrinkles。在这种独特的3D异质结构,厚度为〜100nm的NiSe2 / NiFe2Se4混合的众多nanowrinkles被以均匀的方式生长在NiFe合金。由大的活性表面积和高的电子传导性,superaerophobic NiSe2获利/ NiFe2Se4 @的NiFe异质结构表现出朝向OER优良的电催化活性和耐久性在碱性介质中,在输出的1.53和1.54 V中的低电势,以实现500超高电流密度和千毫安厘米-2,分别,这是最活跃的Fe-Ni系/硒化物中,甚至优于基准的Ir / C催化剂。原位衍生自NiSe2 / NiFe2Se4的FeOOH和NiOOH的物种@的NiFe被认为是对有效的OER活性位点。

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