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Highly efficient CO2 bubble removal on carbon nanotube supported nanocatalysts for direct methanol fuel cell
Journal article   Peer reviewed

Highly efficient CO2 bubble removal on carbon nanotube supported nanocatalysts for direct methanol fuel cell

Soon-Lin Chen, Chun-Ting Lin, Ching-Chang Chieng and Fan-Gang Tseng
Journal of Power Sources, Vol.195(6), pp.1640-1646
15/03/2010

Abstract

Carbon dioxide microbubbles Carbon nanotubes Direct methanol fuel cell
In this paper, we investigate the CO 2 microbubble removal on carbon nanotube (CNT)-supported Pt catalysts in direct methanol fuel cells (DMFCs). The experiments involve the incorporation of near-catalyst-layer bubble visualization and simultaneous electrochemical measurements in a DMFC anodic half cell system, in which CH 3 OH electro-oxidation generate carbon dioxide (CO 2 ) microbubbles. We observe rapid removal of smaller CO 2 bubble sizes and less bubble accumulation on a Pt-coated CNT/CC (Pt/CNT/CC, CC means carbon cloth) electrode. The improved half cell performances of the high CO 2 microbubble removal efficiency on the CNT-modified electrode (Pt/CNT/CC) were 34% and 32% higher than on Pt/CC and Pt/CP electrodes, respectively. © 2009 Elsevier B.V. All rights reserved.

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