首页> 外文会议>Electrocatalysis applied to fuel cells and electrolyzers >Development and Study of Tantalum and Niobium Carbides as Electrocatalyst Supports for the Oxygen Electrode for PEM Water Electrolysis at Elevated Temperatures
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Development and Study of Tantalum and Niobium Carbides as Electrocatalyst Supports for the Oxygen Electrode for PEM Water Electrolysis at Elevated Temperatures

机译:高温下PEM水电解氧电极用钽和碳化铌作为电催化剂的研究与开发

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Polymer electrolyte membrane (PEM) water electrolysis is a prospective method of producing hydrogen. We focused on one of its issues - the lack of a suitable support material for the anode electrocatalyst. TaC and NbC were studied as possible electrocatalyst supports for the PEM water electrolysis. Resistance to oxidation of the TaC and NbC was investigated by exposing them to air at 84 and 150 ℃. Subsequently, their electrical conductivity was measured as the indicator of oxidation. Change in specific surface area and conductivity was measured after different periods of ball milling. We found that the TaC was significantly more resistant to oxidation than the NbC. Eventually, both materials retained relatively high electrical conductivity even with the oxidized surface. TaC can thus be recommended as an electrocatalyst support for the oxygen evolution reaction and both materials are proposed to be tested as alternative electrocatalyst supports for the hydrogen evolution reaction.
机译:高分子电解质膜(PEM)水电解是一种产生氢气的预期方法。我们专注于其问题之一-缺少适合的阳极电催化剂载体材料。研究了TaC和NbC作为PEM水电解的可能的电催化剂载体。通过将TaC和NbC暴露在84和150℃的空气中,研究了它们的抗氧化性。随后,测量它们的电导率作为氧化的指标。在球磨的不同时期之后,测量比表面积和电导率的变化。我们发现TaC比NbC明显更耐氧化。最终,两种材料即使在被氧化的表面上也保持了较高的电导率。因此,可以推荐使用TaC作为氧释放反应的电催化剂载体,并提议将这两种材料作为氢释放反应的替代电催化剂载体进行测试。

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    Department of Energy Conversion and Storage, Technical University of Denmark, Kemitorvet, 207, DK-2800 Kgs. Lyngby, Denmark;

    Department of Energy Conversion and Storage, Technical University of Denmark, Kemitorvet, 207, DK-2800 Kgs. Lyngby, Denmark;

    Department of Energy Conversion and Storage, Technical University of Denmark, Kemitorvet, 207, DK-2800 Kgs. Lyngby, Denmark;

    Department of Inorganic Technology, Faculty of Chemical Technology, Institute of Chemical Technology, Prague, Technicka 5, 166 28 Praha 6-Dejvice, Czech Republic;

    Department of Energy Conversion and Storage, Technical University of Denmark, Kemitorvet, 207, DK-2800 Kgs. Lyngby, Denmark;

    Department of Energy Conversion and Storage, Technical University of Denmark, Kemitorvet, 207, DK-2800 Kgs. Lyngby, Denmark;

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