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Fabrication of catalyst by atomic layer deposition for high specific power density proton exchange membrane fuel cells
Journal article   Peer reviewed

Fabrication of catalyst by atomic layer deposition for high specific power density proton exchange membrane fuel cells

Yang-Chih Hsueh, Chih-Chieh Wang, Chi-Chung Kei, Yu-Hung Lin, Chueh Liu and Tsong-Pyng Perng
Journal of Catalysis, Vol.294, pp.63-68
10/2012

Abstract

Atomic layer deposition Carbon nanotubes Catalyst Platinum Proton-exchange-membrane fuel cell
Platinum nanoparticles as a catalyst for proton-exchange-membrane fuel cells (PEMFCs) were grown on nitric acid-treated multiwalled carbon nanotubes by atomic layer deposition (ALD) at 250 °C. Formation of uniform and well-distributed Pt nanoparticles was achieved. The size and number of Pt nanoparticles could be controlled by the ALD cycle number. The PEMFC test shows that for the membrane electrode assembly made of both anode- and cathode-deposited Pt (0.019 and 0.044 mg cm -2 , respectively) after 100 cycles of ALD has 11 times higher specific power density than that made of commercial E-Tek electrodes containing 0.5 mg cm -2 of Pt. © 2012 Elsevier Inc. All rights reserved.

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