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Multi-channel V-doped CoP hollow nanofibers as high-performance hydrogen evolution reaction electrocatalysts

机译:多渠道V-doped警察空心纳米纤维高性能的析氢反应electrocatalysts

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Rational design and construction of high-efficiency and low-cost non-noble metal-based electrocatalysts for the hydrogen evolution reaction (HER) is critical for future renewable energy systems. Herein, a multi-channel V-doped CoP (MC-V-CoP) hollow nanofiber is fabricatedviaelectrospinning and a subsequent oxidation/phosphorization process. The formation of a multi-channel hollow structure and V doping can enlarge the exposure of active sites, facilitate the electron transfer and tune the electronic structure of the active sites, resulting in the enhancement of the HER performance. As a result, the MC-V-CoP hollow nanofiber exhibits excellent HER activity with a low overpotential of 65 and 189 mV at 10 and 300 mA cm(-2)in alkaline medium, respectively. This is superior to the commercial 20 wt% Pt/C catalyst at a high current density (212 mV at 300 mA cm(-2)), manifesting its outstanding performance toward the HER at a high current density. In addition, the MC-V-CoP hollow nanofiber also exhibits outstanding HER activity in neutral medium. The proposed strategy for fabricating multi-channel hollow nanofibers can also be used to prepare other transition metal phosphides for advanced electrochemical applications.
机译:合理的设计和施工高效和低成本的非贵金属金属electrocatalysts氢进化反应(她)对未来至关重要可再生能源系统。V-doped警察(MC-V-CoP)空心纳米纤维fabricatedviaelectrospinning和随后的氧化/磷化作用过程。多渠道的中空结构和V兴奋剂可以扩大活动网站的曝光,促进电子转移和调优电子结构的活跃的网站,导致她的增强的性能。纳米纤维表现出优秀的她的活动过电压低65和189 mV 10和300年马厘米(2)在碱性介质,分别。优于商业20 wt % Pt / C催化剂在高电流密度(212 mV,享年300岁马厘米(2)),展现其突出在一个高电流性能向她密度。纳米纤维也展览突出她的活动在中性介质。捏造多渠道空心纳米纤维也被用来准备其他过渡金属为先进的电化学磷化应用程序。

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