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Development of 3D open-cell structured Co-Ni catalysts by pulsed electrodeposition for hydrolysis of sodium borohydride

机译:脉冲电沉积水解硼氢化钠水解的3D开孔结构Co-Ni催化剂的研制

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摘要

Structured cobalt-nickel catalysts were synthesized by roughening the nickel-foam surface and electrodepositing cobalt onto it for application to sodium-borohydride hydrolysis. The catalysts were prepared by incorporating aluminum onto the nickel-foam surface, increasing the nickel-foam surface area by subsequently leaching the aluminum, and electrodepositing cobalt. The cobalt was chronoamperometrically electrodeposited under the optimal condition (-2.0 VAg/AgCl) to prevent local cobalt deposition on the substrate edge. Additionally, the cobalt was uniformly deposited onto the porous nickel foam by pulsed chronoamperometric electrodeposition wherein voltages were alternated from -2.0 to -0.3 VAg/AgCl, to electroplate and dissolve the cobalt, respectively. Although the resulting structured cobalt-nickel catalysts exhibited 1.5 times higher catalytic activity than the porous nickel foam, the cobalt content was only 0.57 wt% of the whole sample. In addition, the structured cobalt-nickel catalyst showed higher stability than the porous nickel foam even after ultrasonication as an accelerated durability test. Therefore, pulsed electroplating is an effective method of increasing both catalyst activity and durability.
机译:通过粗糙化镍 - 泡沫表面和电沉积钴在其上施加到硼氢化钠水解中来合成结构化的钴 - 镍催化剂。通过将铝掺入镍 - 泡沫表面上,通过随后浸出铝并电沉积钴来制备催化剂。在最佳条件下(-2.0伏/ AgCl)下钴在最佳条件下致沉积,以防止局部钴沉积在基板边缘上。另外,通过脉冲刻度电沉积电沉积,将钴均匀地沉积在多孔镍泡沫上,其中电压从-2.0至-0.3迷/ AgCl,分别换电并溶解钴。尽管所得的结构化钴 - 镍催化剂比多孔镍泡沫显示出1.5倍的催化活性,但钴含量仅为整个样品的0.57wt%。此外,即使在超声波作为加速耐久性测试之后,结构化的钴 - 镍催化剂也比多孔镍泡沫显示出更高的稳定性。因此,脉冲电镀是增加催化剂活性和耐久性的有效方法。

著录项

  • 来源
    《Applied Surface Science》 |2021年第15期|149530.1-149530.11|共11页
  • 作者单位

    Korea Inst Sci & Technol Ctr Hydrogen Fuel Cell Res Seoul 02792 South Korea|Yonsei Univ Dept Mat Sci & Engn Seoul 03722 South Korea;

    Korea Inst Sci & Technol Ctr Hydrogen Fuel Cell Res Seoul 02792 South Korea|Jeonbuk Natl Univ Sch Mech Design Engn Jeonju Si 54896 South Korea;

    Korea Inst Sci & Technol Ctr Hydrogen Fuel Cell Res Seoul 02792 South Korea;

    Korea Inst Sci & Technol Ctr Hydrogen Fuel Cell Res Seoul 02792 South Korea;

    Korea Inst Sci & Technol Ctr Hydrogen Fuel Cell Res Seoul 02792 South Korea|Korea Univ Sci & Technol KIST Sch Div Energy & Environm Technol Seoul 02792 South Korea;

    Korea Inst Sci & Technol Ctr Hydrogen Fuel Cell Res Seoul 02792 South Korea|Korea Univ Sci & Technol KIST Sch Div Energy & Environm Technol Seoul 02792 South Korea|Kyung Hee Univ KHU KIST Dept Converging Sci & Technol Seoul 02447 South Korea;

    Korea Inst Sci & Technol Ctr Hydrogen Fuel Cell Res Seoul 02792 South Korea|Korea Univ Sci & Technol KIST Sch Div Energy & Environm Technol Seoul 02792 South Korea;

    Yonsei Univ Dept Mat Sci & Engn Seoul 03722 South Korea;

    Korea Inst Sci & Technol Ctr Hydrogen Fuel Cell Res Seoul 02792 South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cobalt electrodeposition; Sodium-borohydride hydrolysis; Hydrogen production; Structured catalyst; Aluminum alloying/dealloying;

    机译:钴电沉积;硼氢化钠水解;氢气生产;结构催化剂;铝合金/易用;

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