Preparation of metal oxide/polyaniline/N-MWCNT hybrid composite electrodes for electrocatalytic synthesis of ammonia at atmospheric pressure

We report the synthesis and characterization of metal oxide/polyaniline/N-doped-multi-walled carbon nanotube (N-MWCNT) hybrid composite electrocatalysts ( i.e. , Fe 3 O 4 /PANI/N-MWCNT and RuO 2 /PANI/N-MWCNT) and their subsequent testing in electrocatalytic synthesis of ammonia from water and nitro...

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Veröffentlicht in:Sustainable energy & fuels 2019, Vol.3 (2), p.431-438
Hauptverfasser: Jung, Chan Hee, Yoo, Chung-Yul, Kim, Jong-Nam, Jeong, Eun-Young, Park, Jong Hyun, Choi, Hyung Chan, Han, Moon-Hee, Yoon, Hyung Chul
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Sprache:eng
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Zusammenfassung:We report the synthesis and characterization of metal oxide/polyaniline/N-doped-multi-walled carbon nanotube (N-MWCNT) hybrid composite electrocatalysts ( i.e. , Fe 3 O 4 /PANI/N-MWCNT and RuO 2 /PANI/N-MWCNT) and their subsequent testing in electrocatalytic synthesis of ammonia from water and nitrogen at low temperatures (≤60 °C) and atmospheric pressure. For the purpose of this test, Nafion-based membrane electrode assemblies (MEA) with a Pt/C anode and different hybrid composite material (HCM) cathodes were fabricated. The maximum obtained rate of ammonia synthesis was 4.1 × 10 −12 mol s −1 cm −2 at 60 °C at an applied voltage of 2.0 V, and the maximum faradaic efficiency of 0.49% was achieved at 25 °C and 1.2 V when RuO 2 /PANI/N-MWCNT was employed as the cathode. This HCM approach could therefore provide a novel insight into the design of different electrocatalysts for the nitrogen reduction reaction with a high faradic efficiency.
ISSN:2398-4902
2398-4902
DOI:10.1039/C8SE00470F