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Synthesis of Ni4.5Fe4.5S8/Ni3S2 film on Ni3Fe alloy foam as an excellent electrocatalyst for the oxygen evolution reaction

机译:在Ni3Fe合金泡沫上合成Ni4.5Fe4.5S8 / Ni3S2薄膜作为氧气析出反应的优良电催化剂。

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Directly synthesizing bicomponent electrocatalysts in the nanostructured form from bulk alloy foam has many potential advantages: robust stability, synergistic effects and fast electron transfer. Here, Ni _(4.5) Fe _(4.5) S _(8) /Ni _(3) S _(2) film with micrometer thickness on bulk substrate was synthesized by a simple one-step hydrothermally assisted sulfurization of Ni _(3) Fe alloy foam for the oxygen evolution reaction (OER) in basic media. Benefiting from the synergetic effect of the bicomponent, reduced interfacial resistance between electrocatalyst and metal substrate, and more exposed catalytic sites on the microstructured film, the as-prepared electrocatalyst (Ni _(4.5) Fe _(4.5) S _(8) /Ni _(3) S _(2) ‖Ni _(3) Fe) behaves as a highly efficient and robust oxygen evolution electrode with felicitous current density in alkaline electrolytes (1 M KOH). It requires an overpotential of only 264 mV to drive 100 mA cm ~(?2) with its catalytic activity being maintained for at least 20 h in 1 M KOH. In the near future, this kind of synthesis strategy can be easily extended to investigate many electrocatalysts derived from 3D alloyed foam with various ratios of the different components, opening new avenue for understanding the relationship between material properties and electrochemical performance.
机译:由块状合金泡沫直接合成纳米结构形式的双组分电催化剂具有许多潜在的优势:稳健的稳定性,协同效应和快速的电子转移。在这里,通过简单的一步水热辅助硫化Ni _(4.5)Fe _(4.5)S _(8)/ Ni _(3)S _(2)在体基底上形成了微米厚度的膜。 3)在碱性介质中用于氧释放反应(OER)的铁合金泡沫。得益于双组分的协同作用,降低的电催化剂和金属基材之间的界面电阻以及微结构化膜上更多暴露的催化位点,制备的电催化剂(Ni _(4.5)Fe _(4.5)S _(8)/ Ni _(3)S _(2)‖Ni_(3)Fe)在碱性电解质(1 M KOH)中具有高电流密度的高效,强健的析氧电极。它仅需264 mV的超电势即可驱动100 mA cm〜(?2),并在1 M KOH中保持至少20 h的催化活性。在不久的将来,可以轻松扩展这种合成策略,以研究由3D合金泡沫衍生的许多具有不同比例不同组分的电催化剂,从而为理解材料性能与电化学性能之间的关系开辟了新途径。

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