Impact of anode catalyst layer porosity on the performance of a direct formic acid fuel cell

被引:22
|
作者
Bauskar, Akshay S. [1 ]
Rice, Cynthia A. [1 ,2 ]
机构
[1] Tennessee Technol Univ, Dept Chem Engn, Cookeville, TN 38505 USA
[2] Tennessee Technol Univ, Ctr Mfg Res, Cookeville, TN 38505 USA
基金
美国国家科学基金会;
关键词
Direct formic acid fuel cell; Membrane electrode assembly; Porosity; Triple phase boundary; Formic acid electro-oxidation; IMPEDANCE; DMFC;
D O I
10.1016/j.electacta.2011.11.057
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Direct formic acid fuel cells (DFAFCs) have attracted much attention in the last few years for portable electronic devices, due to their potential of being high efficiency power sources. They have the potential to replace the state-of-the-art batteries in cell phones, PDAs, and laptop computers if their power density and durability can be improved. In the present investigation, the influence of increased anode catalyst layer porosity on DFAFC power density performance is studied. Lithium carbonate (Li2CO3) was used as a pore-former in this study because of its facile and complete removal after catalyst layer fabrication. The anode catalyst layers presented herein contained unsupported Pt/Ru catalyst and Li2CO3 (in the range of 0-50 wt%) bound with proton conducting ionomer. Higher DFAFC performance is obtained because of the increased porosity within the anode catalyst layer through enhanced reactant and product mass transport. The maximum power density of DFAFC increased by 25% when pore-former was added to the anode catalyst ink. The formic acid onset potential for the anode catalyst layer with 17.5 wt% pore-former was reduced by 30 mV. A constant phase element based equivalent-circuit model was used to investigate anode impedance spectra. Fitted values for the anode impedance spectra confirm the improvement in performance due to an increase in formic acid concentration inside the anode catalyst layer pores along with efficient transport of reactants and products. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:36 / 41
页数:6
相关论文
共 50 条
  • [1] Effect of palladium anode catalyst on performance of direct formic acid fuel cell
    Kim, Jinsoo
    Baek, Seungmin
    Yongchai, Kwon
    Jonghee, Han
    Kim, Seung-Soo
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2011, 242
  • [2] Performance degradation of direct formic acid fuel cell incorporating a Pd anode catalyst
    Jung, Won Suk
    Han, Jonghee
    Yoon, Sung Pil
    Nam, Suk Woo
    Lim, Tae-Hoon
    Hong, Seong-Ahn
    [J]. JOURNAL OF POWER SOURCES, 2011, 196 (10) : 4573 - 4578
  • [3] Influence of Au contents of AuPt anode catalyst on the performance of direct formic acid fuel cell
    Lee, Jae Kwang
    Lee, Jaeyoung
    Han, Jonghee
    Lim, Tae-Hoon
    Sung, Yung-Eun
    Tak, Yongsug
    [J]. ELECTROCHIMICA ACTA, 2008, 53 (09) : 3474 - 3478
  • [4] Effect of Nafion aggregation in the anode catalytic layer on the performance of a direct formic acid fuel cell
    Kang, Yongyin
    Ren, Mingjun
    Yuan, Ting
    Qiao, Yongjin
    Zoa, Zhiqing
    Yang, Hui
    [J]. JOURNAL OF POWER SOURCES, 2010, 195 (09) : 2649 - 2652
  • [5] Effect of deactivation and reactivation of palladium anode catalyst on performance of direct formic acid fuel cell (DFAFC)
    Baik, S. M.
    Han, Jonghee
    Kim, Jinsoo
    Kwon, Yongchai
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2011, 36 (22) : 14719 - 14724
  • [6] Performance of the direct formic acid fuel cell with electrochemically modified palladium-antimony anode catalyst
    Haan, John L.
    Stafford, Kristin M.
    Morgan, Robert D.
    Masel, Richard I.
    [J]. ELECTROCHIMICA ACTA, 2010, 55 (07) : 2477 - 2481
  • [7] Inhibition of Bismuth Dissolution during Anode Catalyst Layer Pore Former Removal in a Direct Formic Acid Fuel Cell
    Pistono, Antonio O.
    Burke, Colten S.
    Cisco, Joshua W.
    Wilson, Christopher
    Adams, Bobby G.
    Rice, Cynthia A.
    [J]. ECS ELECTROCHEMISTRY LETTERS, 2014, 3 (11) : F65 - F67
  • [8] Effects of Nafion loading in anode catalyst inks on the miniature direct formic acid fuel cell
    Morgan, Robert D.
    Haan, John L.
    Masel, Richard I.
    [J]. JOURNAL OF POWER SOURCES, 2010, 195 (19) : 6405 - 6410
  • [9] Performance Enhancement by Adaptation of Long Term Chronoamperometry in Direct Formic Acid Fuel Cell using Palladium Anode Catalyst
    Kwon, Yongchai
    Baik, S. M.
    Han, Jonghee
    Kim, Jinsoo
    [J]. BULLETIN OF THE KOREAN CHEMICAL SOCIETY, 2012, 33 (08) : 2539 - 2545
  • [10] Remarkable activity of a ZnPdPt anode catalyst: Synthesis, characterization, and formic acid fuel cell performance
    Caglar, Aykut
    Cogenli, Mehmet Selim
    Yurtcan, Ayse Bayrakceken
    Alal, Orhan
    Kivrak, Hilal
    [J]. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 2021, 156