Boosting efficiency and stability using zirconia nanosphere-held carbon for proton exchange membrane fuel cells

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Abstract

The synthesis of a zirconia-held carbon supported Pt electrocatalyst increases the fuel cell performance in polymer electrolyte fuel cells. The pure tetragonal phase of the zirconia-carbon composite is synthesized using a low temperature method. The optimum composition of zirconia-carbon exhibits a maximum peak power density of 1.12 W cm-2 with a metal (Pt) loading of 150 μg cm-2. This also improves long time durability and retains 70% of its initial activity even after 6000 potential cycles between 1 to 1.6 V vs. a dynamic hydrogen electrode.

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Dhanasekaran, P., Williams, S. R., Kalpana, D., & Bhat, S. D. (2018). Boosting efficiency and stability using zirconia nanosphere-held carbon for proton exchange membrane fuel cells. RSC Advances, 8(1), 472–480. https://doi.org/10.1039/c7ra10509f

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