Principles and Materials Aspects of Direct Alkaline Alcohol Fuel Cells

Direct alkaline alcohol fuel cells (DAAFCs) have attracted increasing interest over the past decade because of their favourable reaction kinetics in alkaline media, higher energy densities achievable and the easy handling of the liquid fuels. In this review, principles and mechanisms of DAAFCs in al...

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Main Authors: Eileen Hao Yu, Keith Scott, Ulrike Krewer
Format: Article
Language:English
Published: MDPI AG 2010-08-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/3/8/1499/
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spelling doaj-b5677d2e93dd4350ab2676773d609bca2020-11-25T02:25:22ZengMDPI AGEnergies1996-10732010-08-01381499152810.3390/en3081499Principles and Materials Aspects of Direct Alkaline Alcohol Fuel CellsEileen Hao YuKeith ScottUlrike KrewerDirect alkaline alcohol fuel cells (DAAFCs) have attracted increasing interest over the past decade because of their favourable reaction kinetics in alkaline media, higher energy densities achievable and the easy handling of the liquid fuels. In this review, principles and mechanisms of DAAFCs in alcohol oxidation and oxygen reduction are discussed. Despite the high energy densities available during the oxidation of polycarbon alcohols they are difficult to oxidise. Apart from methanol, the complete oxidation of other polycarbon alcohols to CO2 has not been achieved with current catalysts. Different types of catalysts, from conventional precious metal catalyst of Pt and Pt alloys to other lower cost Pd, Au and Ag metal catalysts are compared. Non precious metal catalysts, and lanthanum, strontium oxides and perovskite-type oxides are also discussed. Membranes like the ones used as polymer electrolytes and developed for DAAFCs are reviewed. Unlike conventional proton exchange membrane fuel cells, anion exchange membranes are used in present DAAFCs. Fuel cell performance with DAAFCs using different alcohols, catalysts and membranes, as well as operating parameters are summarised. In order to improve the power output of the DAAFCs, further developments in catalysts, membrane materials and fuel cell systems are essential. http://www.mdpi.com/1996-1073/3/8/1499/alcohol oxidationoxygen reductionanion exchange membranesfuel cellscatalystspower output
collection DOAJ
language English
format Article
sources DOAJ
author Eileen Hao Yu
Keith Scott
Ulrike Krewer
spellingShingle Eileen Hao Yu
Keith Scott
Ulrike Krewer
Principles and Materials Aspects of Direct Alkaline Alcohol Fuel Cells
Energies
alcohol oxidation
oxygen reduction
anion exchange membranes
fuel cells
catalysts
power output
author_facet Eileen Hao Yu
Keith Scott
Ulrike Krewer
author_sort Eileen Hao Yu
title Principles and Materials Aspects of Direct Alkaline Alcohol Fuel Cells
title_short Principles and Materials Aspects of Direct Alkaline Alcohol Fuel Cells
title_full Principles and Materials Aspects of Direct Alkaline Alcohol Fuel Cells
title_fullStr Principles and Materials Aspects of Direct Alkaline Alcohol Fuel Cells
title_full_unstemmed Principles and Materials Aspects of Direct Alkaline Alcohol Fuel Cells
title_sort principles and materials aspects of direct alkaline alcohol fuel cells
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2010-08-01
description Direct alkaline alcohol fuel cells (DAAFCs) have attracted increasing interest over the past decade because of their favourable reaction kinetics in alkaline media, higher energy densities achievable and the easy handling of the liquid fuels. In this review, principles and mechanisms of DAAFCs in alcohol oxidation and oxygen reduction are discussed. Despite the high energy densities available during the oxidation of polycarbon alcohols they are difficult to oxidise. Apart from methanol, the complete oxidation of other polycarbon alcohols to CO2 has not been achieved with current catalysts. Different types of catalysts, from conventional precious metal catalyst of Pt and Pt alloys to other lower cost Pd, Au and Ag metal catalysts are compared. Non precious metal catalysts, and lanthanum, strontium oxides and perovskite-type oxides are also discussed. Membranes like the ones used as polymer electrolytes and developed for DAAFCs are reviewed. Unlike conventional proton exchange membrane fuel cells, anion exchange membranes are used in present DAAFCs. Fuel cell performance with DAAFCs using different alcohols, catalysts and membranes, as well as operating parameters are summarised. In order to improve the power output of the DAAFCs, further developments in catalysts, membrane materials and fuel cell systems are essential.
topic alcohol oxidation
oxygen reduction
anion exchange membranes
fuel cells
catalysts
power output
url http://www.mdpi.com/1996-1073/3/8/1499/
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AT keithscott principlesandmaterialsaspectsofdirectalkalinealcoholfuelcells
AT ulrikekrewer principlesandmaterialsaspectsofdirectalkalinealcoholfuelcells
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