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首页> 外文期刊>ACS applied materials & interfaces >Dominating Role of Aligned MoS2/Ni3S2 Nanoarrays Supported on Three-Dimensional Ni Foam with Hydrophilic Interface for Highly Enhanced Hydrogen Evolution Reaction
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Dominating Role of Aligned MoS2/Ni3S2 Nanoarrays Supported on Three-Dimensional Ni Foam with Hydrophilic Interface for Highly Enhanced Hydrogen Evolution Reaction

机译:对准MOS2 / NI3S2纳米载体的主导作用,其具有亲水界面的三维Ni泡沫,用于高增强的氢进化反应

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摘要

When using water splitting to achieve sustainable hydrogen production, low-cost, stable, and naturally abundant electrocatalysts are required to replace Pt-based ones for the hydrogen evolution reaction (HER). Herein, for the first time, a novel nanostructure with one-dimensional (1D) MoS2/Ni3S2 nanoarrays directly grow on a three-dimensional (3D) Ni foam is developed for this purpose, showing excellent catalytic activity and stability. The as-prepared 3D MoS2/Ni3S2/Ni composite has an onset overpotential as low as 13 mV in 1 M KOH, which is comparable to Pt-based electrocatalyst for HER. According to the classical theory, the Tafel slope of the new composite is relatively low, as it goes through a combined Volmer-Heyrovsky mechanism during hydrogen evolution. All the results attribute the excellent electrocatalytic activity of the nanostructure to the electrical coupling among Ni, Ni3S2, and MoS2, the super hydrophilic interface, the synergistic catalytic effects produced by the MoS2/Ni3S2 nanoarrays, and abundant exposed active edge sites. These unique and previously undeveloped characteristics of the 3D MoS2/Ni3S2/Ni composite make it a very promising earth-abundant electrocatalyst for HER.
机译:当使用水分裂以实现可持续的氢气生产,需要低成本,稳定,天然丰富的电催化剂,以替代氢进化反应(她)的PT基。本文首次开发了一种具有一维(1D)MOS2 / Ni3S2纳米阵列的新型纳米结构直接在三维(3D)Ni泡沫上以此目的开发,显示出优异的催化活性和稳定性。制备的3D MOS2 / Ni3S2 / Ni复合材料在1M KOH中具有低至13mV的发病,其与她的PT基电催化剂相当。根据经典理论,新复合材料的Tafel斜率相对较低,因为它在氢气进化过程中通过了组合的Volmer-Heyrovsky机制。所有结果将纳米结构的优异电催化活性属性将纳米结构的优异的电催化活性属于Ni,Ni3S2和MOS2,超亲水界面,由MOS2 / Ni3S2纳米阵列产生的协同催化效果,以及丰富的暴露的主动边缘位点。 3D MOS2 / NI3S2 / NI复合材料的这些独特且以前未开发的特性使其成为她非常有前途的地球纤维催化剂。

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