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首页> 外文期刊>Advanced Science >Amorphous Ni–Fe–Mo Suboxides Coupled with Ni Network as Porous Nanoplate Array on Nickel Foam: A Highly Efficient and Durable Bifunctional Electrode for Overall Water Splitting
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Amorphous Ni–Fe–Mo Suboxides Coupled with Ni Network as Porous Nanoplate Array on Nickel Foam: A Highly Efficient and Durable Bifunctional Electrode for Overall Water Splitting

机译:无定形Ni-Fe-Mo二氧化物与Ni Network偶联,作为镍泡沫的多孔纳米板阵列:用于整体水分裂的高效耐用的双功能电极

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摘要

It is a great challenge to fabricate electrode with simultaneous high activity for the hydrogen evolution reaction (HER) and the oxygen evolution reaction (OER). Herein, a high‐performance bifunctional electrode formed by vertically depositing a porous nanoplate array on the surface of nickel foam is provided, where the nanoplate is made up by the interconnection of trinary Ni–Fe–Mo suboxides and Ni nanoparticles. The amorphous Ni–Fe–Mo suboxide and its in situ transformed amorphous Ni–Fe–Mo (oxy)hydroxide acts as the main active species for HER and OER, respectively. The conductive network built by Ni nanoparticles provides rapid electron transfer to active sites. Moreover, the hydrophilic and aerophobic electrode surface together with the hierarchical pore structure facilitate mass transfer. The corresponding water electrolyzer demonstrates low cell voltage (1.50 V @ 10 mA cm?2 and 1.63 V @ 100 mA cm?2) with high durability at 500 mA cm?2 for at least 100 h in 1 m KOH.
机译:制造具有同时高活性的电极是一个巨大的挑战,用于氢进化反应(她)和氧气进化反应(oer)。在此,提供了一种通过在镍泡沫表面上垂直沉积多孔纳米板阵列而形成的高性能双官能电极,其中纳米板由三元Ni-Fe-Mo--莫 - 钼和Ni纳米颗粒的互连构成。无定形的Ni-Fe-Mo-Mo-钼和其原位转化的无定形Ni-Fe-Fe-Mo(氧氢氧化物分别作为她和伊尔的主要活性物质。由Ni纳米粒子构建的导电网络为有源网站提供了快速的电子转移。此外,亲水性和避风电极表面与分层孔结构一起促进传质。相应的水电解器在500mA cm 2中以高耐久性的500mAβ2表示低电池电压(1.50V×10 mA×2和1.63V @ 100mA = 2),在1M KOH中至少100小时。

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