Article ID Journal Published Year Pages File Type
1294907 Journal of Power Sources 2007 4 Pages PDF
Abstract

We report a novel method for performance recovery of direct methanol fuel cells. Lowering of air flow rate below a critical value turns the cell into bifunctional regime, when the oxygen-rich part of the cell generates current while the rest part works in electrolysis mode (electrolytic domain). Upon restoring the normal (super-critical) air flow rate, the galvanic performance of the electrolytic domain increases. This recovery effect is presumably attributed to Pt surface cleaning on the cathode with the simultaneous increase in catalyst utilization on the anode.

Related Topics
Physical Sciences and Engineering Chemistry Electrochemistry
Authors
, , , , , , ,