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关于使用薄膜旋转圆盘电极法制备和测试燃料电池催化剂

On the Preparation and Testing of Fuel Cell Catalysts Using the Thin Film Rotating Disk Electrode Method.

作者信息

Inaba Masanori, Quinson Jonathan, Bucher Jan Rudolf, Arenz Matthias

机构信息

Nano-Science Center, Department of Chemistry, University of Copenhagen.

Department of Chemistry and Biochemistry, University of Bern.

出版信息

J Vis Exp. 2018 Mar 16(133):57105. doi: 10.3791/57105.

Abstract

We present a step-by-step tutorial to prepare proton exchange membrane fuel cell (PEMFC) catalysts, consisting of Pt nanoparticles (NPs) supported on a high surface area carbon, and to test their performance in thin film rotating disk electrode (TF-RDE) measurements. The TF-RDE methodology is widely used for catalyst screening; nevertheless, the measured performance sometimes considerably differs among research groups. These uncertainties impede the advancement of new catalyst materials and, consequently, several authors discussed possible best practice methods and the importance of benchmarking. The visual tutorial highlights possible pitfalls in the TF-RDE testing of Pt/C catalysts. A synthesis and testing protocol to assess standard Pt/C catalysts is introduced that can be used together with polycrystalline Pt disks as benchmark catalysts. In particular, this study highlights how the properties of the catalyst film on the glassy carbon (GC) electrode influence the measured performance in TF-RDE testing. To obtain thin, homogeneous catalyst films, not only the catalyst preparation, but also the ink deposition and drying procedures are essential. It is demonstrated that an adjustment of the ink's pH might be necessary, and how simple control measurements can be used to check film quality. Once reproducible TF-RDE measurements are obtained, determining the Pt loading on the catalyst support (expressed as Pt wt%) and the electrochemical surface area is necessary to normalize the determined reaction rates to either surface area or Pt mass. For the surface area determination, so-called CO stripping, or the determination of the hydrogen underpotential deposition (Hupd) charge, are standard. For the determination of the Pt loading, a straightforward and cheap procedure using digestion in aqua regia with subsequent conversion of Pt(IV) to Pt(II) and UV-vis measurements is introduced.

摘要

我们提供了一个逐步的教程,用于制备由负载在高比表面积碳上的铂纳米颗粒(NPs)组成的质子交换膜燃料电池(PEMFC)催化剂,并测试它们在薄膜旋转圆盘电极(TF-RDE)测量中的性能。TF-RDE方法被广泛用于催化剂筛选;然而,不同研究小组测得的性能有时会有很大差异。这些不确定性阻碍了新型催化剂材料的发展,因此,几位作者讨论了可能的最佳实践方法以及基准测试的重要性。这个可视化教程突出了Pt/C催化剂TF-RDE测试中可能存在的陷阱。介绍了一种评估标准Pt/C催化剂的合成和测试方案,该方案可与多晶铂圆盘一起用作基准催化剂。特别是,本研究强调了玻碳(GC)电极上催化剂膜的性质如何影响TF-RDE测试中的测量性能。为了获得薄而均匀的催化剂膜,不仅催化剂的制备,而且墨水的沉积和干燥程序都至关重要。结果表明,可能需要调整墨水的pH值,以及如何使用简单的控制测量来检查膜的质量。一旦获得可重复的TF-RDE测量结果,确定催化剂载体上的铂负载量(以铂重量百分比表示)和电化学表面积是必要的,以便将确定的反应速率归一化为表面积或铂质量。对于表面积的测定,所谓的CO脱附或氢欠电位沉积(Hupd)电荷的测定是标准方法。对于铂负载量的测定,介绍了一种简单且廉价的程序,即使用王水消化,随后将Pt(IV)转化为Pt(II)并进行紫外-可见测量。

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