Oxygen reduction and methanol oxidation behaviour of SiC based Pt nanocatalysts for proton exchange membrane fuel cells

被引:39
|
作者
Dhiman, Rajnish [1 ]
Stamatin, Serban N. [1 ]
Andersen, Shuang M. [1 ]
Morgen, Per [2 ]
Skou, Eivind M. [1 ]
机构
[1] Univ Southern Denmark SDU, Dept Chem Engn Biotechnol & Environm Technol, DK-5230 Odense M, Denmark
[2] Univ Southern Denmark SDU, Dept Phys Chem & Pharm, DK-5230 Odense M, Denmark
关键词
CATALYST SUPPORTS; CARBON NANOTUBES; DISK ELECTRODE; PLATINUM; TEMPERATURE; AREA; ELECTROCATALYSTS; DEGRADATION; CHALLENGES;
D O I
10.1039/c3ta12744c
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Research with proton exchange membrane fuel cells has demonstrated their potential as important providers of clean energy. The commercialization of this type of fuel cell needs a breakthrough in the electrocatalyst technology to reduce the relatively large amount of noble metal platinum used with the present carbon based substrates. We have recently examined suitably sized silicon carbide (SiC) particles as catalyst supports for fuel cells based on the stable chemical and mechanical properties of this material. In the present study, we have continued our work with studies of the oxygen reduction and methanol oxidation reactions of SiC supported catalysts and measured them against commercially available carbon based catalysts. The deconvolution of the hydrogen desorption signals in CV cycles shows a higher contribution of Pt (110) and Pt (111) peaks compared to Pt (100) for SiC based supports than for carbon based commercial catalysts, when HClO4 is used as an electrolyte. The Pt (110) and Pt (111) facets are shown to have higher electrochemical activities than Pt (100) facets. To the best of our knowledge, methanol oxidation studies and the comparison of peak deconvolutions of the H desorption region in CV cyclic studies are reported here for the first time for SiC based catalysts. The reaction kinetics for the oxygen reduction and for methanol oxidation with Pt/SiC are observed to be similar to the carbon based catalysts. The SiC based catalyst shows a higher specific surface activity than BASF (Pt/C) for methanol oxidation and oxygen reduction while the mass activity values are comparable.
引用
收藏
页码:15509 / 15516
页数:8
相关论文
共 50 条
  • [41] Cobalt based non-precious electrocatalysts for oxygen reduction reaction in proton exchange membrane fuel cells
    Ma, Yuanwei
    Zhang, Huamin
    Zhong, Hexiang
    Xu, Ting
    Jin, Hong
    Tang, Yongfu
    Xu, Zhuang
    ELECTROCHIMICA ACTA, 2010, 55 (27) : 7945 - 7950
  • [42] Blend membranes for direct methanol and proton exchange membrane fuel cells
    Bhavani, Perumal
    Sangeetha, Dharmalingam
    CHINESE JOURNAL OF POLYMER SCIENCE, 2012, 30 (04) : 548 - 560
  • [43] Blend membranes for direct methanol and proton exchange membrane fuel cells
    Perumal Bhavani
    Dharmalingam Sangeetha
    Chinese Journal of Polymer Science, 2012, 30 : 548 - 560
  • [44] Oxygen gain analysis for proton exchange membrane fuel cells
    O'Neil, Kevin
    Meyers, Jeremy P.
    Darling, Robert M.
    Perry, Michael L.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (01) : 373 - 382
  • [45] Integrating nanostructured Pt-based electrocatalysts in proton exchange membrane fuel cells
    Ly, Alvin
    Asset, Tristan
    Atanassov, Plamen
    JOURNAL OF POWER SOURCES, 2020, 478
  • [46] Analysis of oxygen reduction rate in a proton exchange membrane fuel cell
    Fukada, S
    ENERGY CONVERSION AND MANAGEMENT, 2001, 42 (09) : 1121 - 1131
  • [47] Au integrated AgPt nanorods for the oxygen reduction reaction in proton exchange membrane fuel cells
    Fidiani, Elok
    Thirunavukkarasu, Gnanavel
    Li, Yang
    Chiu, Yu-Lung
    Du, Shangfeng
    JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (09) : 5578 - 5587
  • [48] A novel non-noble electrocatalyst for oxygen reduction in proton exchange membrane fuel cells
    Zhong, Hexiang
    Zhang, Huamin
    Liang, Yongmin
    Zhang, Jianlu
    Wang, Meiri
    Wang, Xiaoli
    JOURNAL OF POWER SOURCES, 2007, 164 (02) : 572 - 577
  • [49] Zigzag carbon as efficient and stable oxygen reduction electrocatalyst for proton exchange membrane fuel cells
    Longfei Xue
    Yongcheng Li
    Xiaofang Liu
    Qingtao Liu
    Jiaxiang Shang
    Huiping Duan
    Liming Dai
    Jianglan Shui
    Nature Communications, 9
  • [50] Atomically dispersed manganese catalysts for oxygen reduction in proton-exchange membrane fuel cells
    Jiazhan Li
    Mengjie Chen
    David A. Cullen
    Sooyeon Hwang
    Maoyu Wang
    Boyang Li
    Kexi Liu
    Stavros Karakalos
    Marcos Lucero
    Hanguang Zhang
    Chao Lei
    Hui Xu
    George E. Sterbinsky
    Zhenxing Feng
    Dong Su
    Karren L. More
    Guofeng Wang
    Zhenbo Wang
    Gang Wu
    Nature Catalysis, 2018, 1 : 935 - 945