Low-Platinum-Content Electrocatalysts for Methanol and Ethanol Electrooxidation

Author:

Li Meng,Adzic Radoslav R.

Publisher

Springer London

Reference120 articles.

1. Gosselink JW (2002) Pathways to a more sustainable production of energy: sustainable hydrogen—a research objective for Shell. Int J Hydrogen Energ 27:1125–1129

2. Aricò AS, Baglio V, Antonucci V (2009) Direct methanol fuel cells: history, status and perspectives. In: Liu H, Zhang J (eds) Electrocatalysis of direct methanol fuel cells. Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim

3. Lamy C, Leger J-M, Srinivasan S (2001) Direct methanol fuel cells—from a 20th century electrochemist’s dream to a 21st century emerging technology. In: Bockris JO’M (ed) Modern aspects of electrochemistry. Plenum, New York, NY

4. Lamy C, Coutanceau C, Leger J-M (2009) The direct ethanol fuel cell: a challenge to convert bioethanol cleanly into electric energy. In: Barbaro P, Bianchini C (eds) Catalysis for sustainable energy production. Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim

5. Batista EA, Hoster H, Iwasita T (2003) Analysis of FTIRS data and thermal effects during methanol oxidation on UHV-cleaned PtRu alloys. J Electroanal Chem 554–555:265–271

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