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首页> 外文期刊>Angewandte Chemie >Bifunctional Electrocatalysts for Overall Water Splitting from an Iron/Nickel-Based Bimetallic Metal-Organic Framework/Dicyandiamide Composite
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Bifunctional Electrocatalysts for Overall Water Splitting from an Iron/Nickel-Based Bimetallic Metal-Organic Framework/Dicyandiamide Composite

机译:基于铁/镍双金属 - 有机框架/双氰胺复合材料的双官能电催化剂

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摘要

Pyrolysis of a bimetallic metal-organic framework (MIL-88-Fe/Ni)-dicyandiamide composite yield a Fe and Ni containing carbonaceous material, which is an efficient bifunctional electrocatalyst for overall water splitting. FeNi3 and NiFe2O4 are found as metallic and metal oxide compounds closely embedded in an N-doped carbon-carbon nanotube matrix. This hybrid catalyst (Fe-Ni@NC-CNTs) significantly promotes the charge transfer efficiency and restrains the corrosion of the metallic catalysts, which is shown in a high OER and HER activity with an overpotential of 274 and 202mV, respectively at 10mAcm(-2) in alkaline solution. When this bifunctional catalyst was further used for H-2 and O-2 production in an electrochemical water-splitting unit, it can operate in ambient conditions with a competitive gas production rate of 1.15 and 0.57Ls(-1) for hydrogen and oxygen, respectively, showing its potential for practical applications.
机译:双金属金属 - 有机框架(MIL-88-Fe / Ni) - 碘酸铵复合材料的热解产生Fe和Ni的含碳材料,是整个水分裂的有效双官能电催化剂。 发现Feni3和NiFe2O4作为金属和金属氧化物化合物,紧密地嵌入N掺杂的碳 - 碳纳米管基质中。 该杂化催化剂(Fe-Ni @ NC-CNT)显着促进了电荷转移效率,并限制了金属催化剂的腐蚀,其在高伊尔和她的活性中示出了274和202mV,分别在10macm( - 2)在碱性溶液中。 当该双官能催化剂进一步用于电化学水分解单元中的H-2和O-2产生时,它可以在氢气和氧气的竞争气体生产率为1.15和0.57Ls(-1)的环境条件下。 分别显示其对实际应用的潜力。

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