High‐Performance Direct Methanol Fuel Cells with Precious‐Metal‐Free Cathode

Direct methanol fuel cells (DMFCs) hold great promise for applications ranging from portable power for electronics to transportation. However, apart from the high costs, current Pt‐based cathodes in DMFCs suffer significantly from performance loss due to severe methanol crossover from anode to cathode. The migrated methanol in cathodes tends to contaminate Pt active sites through yielding a mixed potential region resulting from oxygen reduction reaction and methanol oxidation reaction. Therefore, highly methanol‐tolerant cathodes must be developed before DMFC technologies become viable. The newly developed reduced graphene oxide (rGO)‐based Fe‐N‐C cathode exhibits high methanol tolerance and exceeds the performance of current Pt cathodes, as evidenced by both rotating disk electrode and DMFC tests. While the morphology of 2D rGO is largely preserved, the resulting Fe‐N‐rGO catalyst provides a more unique porous structure. DMFC tests with various methanol concentrations are systematically studied using the best performing Fe‐N‐rGO catalyst. At feed concentrations greater than 2.0 m, the obtained DMFC performance from the Fe‐N‐rGO cathode is found to start exceeding that of a Pt/C cathode. This work will open a new avenue to use nonprecious metal cathode for advanced DMFC technologies with increased performance and at significantly reduced cost.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
High‐Performance Direct Methanol Fuel Cells with Precious‐Metal‐Free Cathode ; volume:3 ; number:11 ; year:2016 ; extent:9
Advanced science ; 3, Heft 11 (2016) (gesamt 9)

Creator
Li, Qing
Wang, Tanyuan
Havas, Dana
Zhang, Hanguang
Xu, Ping
Han, Jiantao
Cho, Jaephil
Wu, Gang

DOI
10.1002/advs.201600140
URN
urn:nbn:de:101:1-2022110707303280639661
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:29 AM CEST

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Associated

  • Li, Qing
  • Wang, Tanyuan
  • Havas, Dana
  • Zhang, Hanguang
  • Xu, Ping
  • Han, Jiantao
  • Cho, Jaephil
  • Wu, Gang

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