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熔盐法制备自支撑Ni掺杂Mo2C@CFP复合电极及其电催化析氢性能的研究
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南昌航空大学

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国家自然科学基金(51862024,51772140,51962023);江西省自然科学基金(20171ACB21033,20192ACBL21047)。


Self-supporting Ni-doped Mo2C@CFP electrode prepared by molten salt method for Hydrogen Evolution Reaction
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Nanchang Hangkong University

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    摘要:

    Mo2C具有类似于Pt等贵金属的电子结构和催化特性,有望替代Pt等贵金属成为新型非贵金属析氢催化剂,但是纯Mo2C导电性差且氢释放动力学慢。为提高Mo2C的电催化析氢性能,本工作采用低温熔盐法在碳纤维纸(CFP)基底上制备了自支撑Mo2C电催化剂,研究了Mo和MoO3钼源、Ni和Ni(NO3)2镍源掺杂剂、添加炭黑等因素对合成产物物相、显微形貌和结构、电催化性能的影响。结果表明,炭黑和Ni的引入可以促使Mo2C晶粒细化以及在表面生成褶皱状结构,能够提供更多活性位点,Ni(NO3)2的加入能够使采用MoO3为钼源合成的Mo2C的晶粒变成纳米花状结构,大大提高了其比表面积,也促进了反应生成的复合电极Ni(NO3)2-Mo2CCBO@CFP中的电子转移效率,表现出最佳的HER活性,其η10为117 mV,塔菲尔斜率低至73.8 mV dec-1

    Abstract:

    Mo2C possesses the electronic structure and catalytic properties similar to that of Pt-like noble metals, thus been suggested to be an encouraging non-noble metal electrocatalysts substitute to the noble metals. However, pure Mo2C has poor conductivity and slow hydrogen release kinetics. In order to improve the electrocatalytic hydrogen evolution performance of Mo2C, this work employed a low-temperature molten salt method to prepare several self-supporting Mo2C electrocatalysts on carbon fiber paper (CFP). The effects of molybdenum sources (Mo, MoO3), nickel sources (Ni, Ni(NO3)2) and carbon black on the phase, microstructure/morphology and electrocatalytic performance of the synthesized product were investigated. The results show that the introduction of carbon black and Ni can promote the refinement of Mo2C grains and the formation of wrinkled structure on its surface, thus providing more active sites. When using MoO3 as molybdenum source, Ni(NO3)2 makes the morphology of Mo2C transforming from granular to flower-like, which greatly increases its specific surface area, and also promotes the electron transfer efficiency in the synthesized Ni(NO3)2-Mo2CCBO@CFP composite electrode. This composite electrode shows the best HER activity, with the smallestη10 of 117 mV and the lowest Tafel slop of 73.8 mV dec-1.

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章 雷,黄军同,胡智辉,万文俊,李喜宝,冯志军,万里鹰,陈 智.熔盐法制备自支撑Ni掺杂Mo2C@CFP复合电极及其电催化析氢性能的研究[J].稀有金属材料与工程,2022,51(4):1341~1347.[Zhang Lei, Huang Juntong, Hu Zhihui, Wan Wenjun, Li Xibao, Feng Zhijun, Wan Liying, Chen Zhi. Self-supporting Ni-doped Mo2C@CFP electrode prepared by molten salt method for Hydrogen Evolution Reaction[J]. Rare Metal Materials and Engineering,2022,51(4):1341~1347.]
DOI:10.12442/j. issn.1002-185X.20210264

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历史
  • 收稿日期:2021-03-27
  • 最后修改日期:2021-04-08
  • 录用日期:2021-05-24
  • 在线发布日期: 2022-05-05
  • 出版日期: 2022-04-28