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采用电化学和原位XAFS技术表征的用于聚合物电解质燃料电池的不同种类碳载Pt/C阴极催化剂的性能与耐久性。

Performance and durability of Pt/C cathode catalysts with different kinds of carbons for polymer electrolyte fuel cells characterized by electrochemical and in situ XAFS techniques.

作者信息

Nagasawa Kensaku, Takao Shinobu, Higashi Kotaro, Nagamatsu Shin-ichi, Samjeské Gabor, Imaizumi Yoshiaki, Sekizawa Oki, Yamamoto Takashi, Uruga Tomoya, Iwasawa Yasuhiro

机构信息

Innovation Research Center for Fuel Cells, The University of Electro-Communications, Chofu, Tokyo 182-8585, Japan.

出版信息

Phys Chem Chem Phys. 2014 Jun 7;16(21):10075-87. doi: 10.1039/c3cp54457e. Epub 2014 Feb 11.

Abstract

The electrochemical activity and durability of Pt nanoparticles on different kinds of carbon supports in oxygen reduction reactions (ORR) were investigated using rotating disc electrodes (RDE) and the membrane electrode assemblies (MEA) of polymer electrolyte fuel cells (PEFC). The mass activity of Pt/C catalysts (ORR activity per 1 mg of Pt) at the RDE decreased, according to the type of carbon support, in the following order; Ketjenblack (KB) > acetylene black (AB) > graphene > multiwall carbon nanotube (MW-CNT) > carbon black (CB), whereas the average size of the Pt nanoparticles and the surface specific activity (ORR activity per electrochemical surface area) did not vary significantly between these carbon supports. These results indicate that the different mass activities of the Pt/C catalysts may originate from the differences in the fraction of Pt on the carbon supports which is available for utilization. The durability of the MEAs of the top two active catalysts Pt/KB and Pt/AB among the five catalysts was examined based on ORR performance, TEM and in situ XAFS. It was found that the performance of the Pt/KB cathode catalyst in PEFC MEA decreased significantly over 500 accelerated durability test (ADT) cycles, whereas the performance of the Pt/AB cathode catalyst in PEFC MEA did not decrease significantly during 500 ADT cycles, it was also found that the Pt/AB possesses 8 times higher durability compared with the Pt/KB. In situ Pt LIII-edge XAFS data in the ADT cycles and stepwise potential operations revealed the different oxidation-reduction behaviors of the Pt nanoparticles on the KB and AB supports. The Pt/KB was oxidized to form surface PtO layers more easily than the Pt/AB in the increasing potential operation from 0.4 VRHE to 1.4 VRHE, and the surface PtO layers of the Pt/AB were reduced to the metallic Pt state more readily than those of the Pt/KB in the decreasing potential operation from 1.4 VRHE to 0.4 VRHE. The XAFS analysis for the Pt valences and the coordination numbers of Pt-O and Pt-Pt demonstrated that the Pt/AB catalyst is more durable than the Pt/KB catalyst in PEFC MEAs.

摘要

使用旋转圆盘电极(RDE)和聚合物电解质燃料电池(PEFC)的膜电极组件(MEA),研究了不同种类碳载体上的Pt纳米颗粒在氧还原反应(ORR)中的电化学活性和耐久性。根据碳载体的类型,RDE上Pt/C催化剂的质量活性(每1mg Pt的ORR活性)按以下顺序降低:科琴黑(KB)>乙炔黑(AB)>石墨烯>多壁碳纳米管(MW-CNT)>炭黑(CB),而这些碳载体之间Pt纳米颗粒的平均尺寸和表面比活性(每电化学表面积的ORR活性)没有显著变化。这些结果表明,Pt/C催化剂不同的质量活性可能源于碳载体上可用于利用的Pt比例的差异。基于ORR性能、透射电子显微镜(TEM)和原位X射线吸收精细结构(XAFS),研究了五种催化剂中前两种活性催化剂Pt/KB和Pt/AB的MEA的耐久性。结果发现,在500次加速耐久性测试(ADT)循环中,PEFC MEA中Pt/KB阴极催化剂的性能显著下降,而PEFC MEA中Pt/AB阴极催化剂的性能在500次ADT循环中没有显著下降,还发现Pt/AB的耐久性比Pt/KB高8倍。ADT循环和逐步电位操作中的原位Pt LIII边缘XAFS数据揭示了KB和AB载体上Pt纳米颗粒不同的氧化还原行为。在从0.4 VRHE到1.4 VRHE的电位增加操作中,Pt/KB比Pt/AB更容易被氧化形成表面PtO层,而在从1.4 VRHE到0.4 VRHE的电位降低操作中,Pt/AB的表面PtO层比Pt/KB的表面PtO层更容易还原为金属Pt状态。对Pt化合价以及Pt-O和Pt-Pt配位数的XAFS分析表明,在PEFC MEA中,Pt/AB催化剂比Pt/KB催化剂更耐用。

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