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探索双金属PtPd/C阴极催化剂提升质子交换膜燃料电池性能的潜力。

Exploring the Potential of Bimetallic PtPd/C Cathode Catalysts to Enhance the Performance of PEM Fuel Cells.

作者信息

Guterman Vladimir, Alekseenko Anastasia, Belenov Sergey, Menshikov Vladislav, Moguchikh Elizaveta, Novomlinskaya Irina, Paperzh Kirill, Pankov Ilya

机构信息

Faculty of Chemistry, Southern Federal University, 7 Zorge St., Rostov-on-Don 344090, Russia.

Prometheus R&D LLC, 4g/36 Zhmaylova St., Rostov-on-Don 344091, Russia.

出版信息

Nanomaterials (Basel). 2024 Oct 18;14(20):1672. doi: 10.3390/nano14201672.

Abstract

Bimetallic platinum-containing catalysts are deemed promising for electrolyzers and proton-exchange membrane fuel cells (PEMFCs). A significant number of laboratory studies and commercial offers are related to PtNi/C and PtCo/C electrocatalysts. The behavior of PtPd/C catalysts has been studied much less, although palladium itself is the metal closest to platinum in its properties. Using a series of characterization methods, this paper presents a comparative study of structural characteristics of the commercial PtPd/C catalysts containing 38% wt. of precious metals and the well-known HiSpec4000 Pt/C catalyst. The electrochemical behavior of the catalysts was studied both in a three-electrode electrochemical cell and in the membrane electrode assemblies (MEAs) of hydrogen-air PEMFCs. Both PtPd/C samples demonstrated higher values of the electrochemically active surface area, as well as greater specific and mass activity in the oxygen reduction reaction in comparison with conventional Pt/C, while not being inferior to the latter in durability. The MEA based on the best of the PtPd/C catalysts also exhibited higher performance in single tests and long-term durability testing. The results of this study conducted indicate the prospects of using bimetallic PtPd/C materials for cathode catalysts in PEMFCs.

摘要

双金属含铂催化剂被认为对电解槽和质子交换膜燃料电池(PEMFC)具有前景。大量的实验室研究和商业产品都与PtNi/C和PtCo/C电催化剂有关。尽管钯本身是在性质上最接近铂的金属,但对PtPd/C催化剂行为的研究却少得多。本文采用一系列表征方法,对含38%重量百分比贵金属的商业PtPd/C催化剂与著名的HiSpec4000 Pt/C催化剂的结构特征进行了对比研究。在三电极电化学池中以及在氢-空气PEMFC的膜电极组件(MEA)中研究了催化剂的电化学行为。与传统的Pt/C相比,两种PtPd/C样品在氧还原反应中均表现出更高的电化学活性表面积值,以及更高的比活性和质量活性,同时在耐久性方面不逊色于后者。基于最佳PtPd/C催化剂的MEA在单电池测试和长期耐久性测试中也表现出更高的性能。本研究结果表明了在PEMFC中使用双金属PtPd/C材料作为阴极催化剂的前景。

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