Highly active and durable non-platinum group metals (non-PGM) catalyst based on iron-nitrogen-carbon (Fe-N-C) for the oxygen reduction reaction (ORR) derived from pyrolyzed Fe-aminobenzimidazole (Fe- ABZIM) was synthesized by sacrificial support method (SSM), and characterized by several physicalchemical techniques: scanning electron microscopy, transmission electron microscopy, Brunauer- Emmett-Teller method and X-ray photoelectron spectroscopy. In half-cell electrochemical configuration, the Fe-ABZIM catalyst presented a significant improvement of ORR activity with respect to a recently reported non-PGM formulation based on Fe-aminoantipyrine, with an enhancement of halfwave potential of about 85 mV in O2-saturated sulfuric acid solution. To the moment, the gap with respect to a benchmark Pt/C catalyst was about 90 mV. The Fe-ABZIM catalyst showed a remarkably high tolerance to methanol, resulting in superior ORR performance compared to Pt/C at methanol concentrations higher than 0.02 M. In direct methanol fuel cell (DMFC) good performances were also obtained. A durability test (100 h) at 90 C, feeding 5 M methanol, was carried out. A certain decrease of performance was recorded, amounting to 0.20 mW cm2 h1 at the very beginning of test and 0.05 mW cm2 h1 at the end. However, the Fe-ABZIM is more adequate than previously reported formulations in terms of both ORR activity and stability.

Performance, methanol tolerance and stability of Feaminobenzimidazole derived catalyst for direct methanol fuel cells

David Sebastian;Vincenzo Baglio
2016

Abstract

Highly active and durable non-platinum group metals (non-PGM) catalyst based on iron-nitrogen-carbon (Fe-N-C) for the oxygen reduction reaction (ORR) derived from pyrolyzed Fe-aminobenzimidazole (Fe- ABZIM) was synthesized by sacrificial support method (SSM), and characterized by several physicalchemical techniques: scanning electron microscopy, transmission electron microscopy, Brunauer- Emmett-Teller method and X-ray photoelectron spectroscopy. In half-cell electrochemical configuration, the Fe-ABZIM catalyst presented a significant improvement of ORR activity with respect to a recently reported non-PGM formulation based on Fe-aminoantipyrine, with an enhancement of halfwave potential of about 85 mV in O2-saturated sulfuric acid solution. To the moment, the gap with respect to a benchmark Pt/C catalyst was about 90 mV. The Fe-ABZIM catalyst showed a remarkably high tolerance to methanol, resulting in superior ORR performance compared to Pt/C at methanol concentrations higher than 0.02 M. In direct methanol fuel cell (DMFC) good performances were also obtained. A durability test (100 h) at 90 C, feeding 5 M methanol, was carried out. A certain decrease of performance was recorded, amounting to 0.20 mW cm2 h1 at the very beginning of test and 0.05 mW cm2 h1 at the end. However, the Fe-ABZIM is more adequate than previously reported formulations in terms of both ORR activity and stability.
2016
Istituto di Tecnologie Avanzate per l'Energia - ITAE
DMFC
Non-PGM
ORR
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/323656
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