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Review

Methanol-Tolerant M–N–C Catalysts for Oxygen Reduction Reactions in Acidic Media and Their Application in Direct Methanol Fuel Cells

by
Carmelo Lo Vecchio
1,
David Sebastián
2,*,
María Jesús Lázaro
2,
Antonino Salvatore Aricò
1 and
Vincenzo Baglio
1,*
1
Institute for Advanced Energy Technologies “Nicola Giordano”, CNR-Consiglio Nazionale delle Ricerche, Via Salita Santa Lucia sopra Contesse, 5, 98126 Messina, Italy
2
Institute of Carbochemistry, CSIC-Spanish National Research Council, C/. Miguel Luesma Castán, 4, 50018 Zaragoza, Spain
*
Authors to whom correspondence should be addressed.
Catalysts 2018, 8(12), 650; https://doi.org/10.3390/catal8120650
Submission received: 7 November 2018 / Revised: 3 December 2018 / Accepted: 7 December 2018 / Published: 11 December 2018
(This article belongs to the Special Issue Platinum-Free Electrocatalysts)

Abstract

Direct methanol fuel cells (DMFCs) are emerging technologies for the electrochemical conversion of the chemical energy of a fuel (methanol) directly into electrical energy, with a low environmental impact and high efficiency. Yet, before this technology can reach a large-scale diffusion, specific issues must be solved, in particular, the high cost of the cell components. In a direct methanol fuel cell system, high capital costs are mainly derived from the use of noble metal catalysts; therefore, the development of low-cost electro-catalysts, satisfying the target requirements of high performance and durability, represents an important challenge. The research is currently addressed to the development of metal–nitrogen–carbon (M–N–C) materials as cheap and sustainable catalysts for the oxygen reduction reaction (ORR) in an acid environment, for application in polymer electrolyte fuel cells fueled by hydrogen or alcohol. In particular, this mini-review summarizes the recent advancements achieved in DMFCs using M–N–C catalysts. The presented analysis is restricted to M–N–C catalysts mounted at the cathode of a DMFC or investigated in rotating disk electrode (RDE) configuration for the ORR in the presence of methanol in order to study alcohol tolerance. The main synthetic routes and characteristics of the catalysts are also presented.
Keywords: M–N–C catalysts; direct methanol fuel cell; methanol tolerance; oxygen reduction reaction M–N–C catalysts; direct methanol fuel cell; methanol tolerance; oxygen reduction reaction

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MDPI and ACS Style

Lo Vecchio, C.; Sebastián, D.; Lázaro, M.J.; Aricò, A.S.; Baglio, V. Methanol-Tolerant M–N–C Catalysts for Oxygen Reduction Reactions in Acidic Media and Their Application in Direct Methanol Fuel Cells. Catalysts 2018, 8, 650. https://doi.org/10.3390/catal8120650

AMA Style

Lo Vecchio C, Sebastián D, Lázaro MJ, Aricò AS, Baglio V. Methanol-Tolerant M–N–C Catalysts for Oxygen Reduction Reactions in Acidic Media and Their Application in Direct Methanol Fuel Cells. Catalysts. 2018; 8(12):650. https://doi.org/10.3390/catal8120650

Chicago/Turabian Style

Lo Vecchio, Carmelo, David Sebastián, María Jesús Lázaro, Antonino Salvatore Aricò, and Vincenzo Baglio. 2018. "Methanol-Tolerant M–N–C Catalysts for Oxygen Reduction Reactions in Acidic Media and Their Application in Direct Methanol Fuel Cells" Catalysts 8, no. 12: 650. https://doi.org/10.3390/catal8120650

APA Style

Lo Vecchio, C., Sebastián, D., Lázaro, M. J., Aricò, A. S., & Baglio, V. (2018). Methanol-Tolerant M–N–C Catalysts for Oxygen Reduction Reactions in Acidic Media and Their Application in Direct Methanol Fuel Cells. Catalysts, 8(12), 650. https://doi.org/10.3390/catal8120650

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