LEADER 03341oam 2200469 450 001 9910298641803321 005 20190911112727.0 010 $a94-007-7708-6 024 7 $a10.1007/978-94-007-7708-8 035 $a(OCoLC)872703667 035 $a(MiFhGG)GVRL6UYK 035 $a(EXLCZ)993710000000075911 100 $a20131119d2014 uy 0 101 0 $aeng 135 $aurun|---uuuua 181 $ctxt 182 $cc 183 $acr 200 00$aDirect alcohol fuel cells $ematerials, performance, durability and applications /$fHoracio R. Corti, Ernesto R. Gonzalez, editors 205 $a1st ed. 2014. 210 1$aDordrecht [Netherlands] :$cSpringer,$d2014. 215 $a1 online resource (ix, 370 pages) $cillustrations (some color) 225 0 $aGale eBooks 300 $aDescription based upon print version of record. 311 $a94-007-7707-8 320 $aIncludes bibliographical references and index. 327 $aIntroduction to Direct Alcohol Fuel Cells -- Catalysts for methanol oxidation -- Pt and Pd-based electrocatalysts for ethanol and ethylene glycol fuel cells -- Electro-oxidation of 3-carbon alcohols and its viability for fuel cell application -- Nanostructured Electrocatalysts for Methanol and Ethanol-Tolerant Cathodes -- Membranes for Direct Alcohol Fuel Cells -- Carbon materials for fuel cells -- Physical modeling and numerical simulation of Direct Alcohol Fuel Cells -- Scales, mechanisms and approaches -- Applications and durability of direct methanol fuel cells.  . 330 $aDirect Alcohol Fuel Cells: Materials, Performance, Durability and Applications begins with an introductory overview of direct alcohol fuel cells (DAFC); it focuses on the main goals and challenges in the areas of materials development, performance, and commercialization. The preparation and the properties of the anodic catalysts used for the oxidation of methanol, higher alcohols, and alcohol tolerant cathodes are then described. The membranes used as proton conductors in DAFC are examined, as well as alkaline membranes, focusing on the electrical conductivity and alcohol permeability.  The use of different kinds of carbon materials as catalyst supports, gas diffusion layers, and current collectors in DAFC is also discussed. State of the art of the modeling is used to estimate performance and durability. The closing chapter reviews the use of DAFC in portable equipment and mobile devices and features a detailed discussion on the mechanisms of component degradation which limits their durability. This book is written to facilitate the understanding of DAFC technology, applications, and future challenges. It is an excellent introduction for electrochemical and material engineers interested in small fuel cells as portable energy sources, scientists focused on materials science for energy production and storage, as well as policy-makers in the area of renewable energies. 606 $aFuel cells 606 $aMethanol as fuel 615 0$aFuel cells. 615 0$aMethanol as fuel. 676 $a541.37 676 $a621.312429 702 $aCorti$b Horacio R. 702 $aGonzalez$b Ernesto R. 801 0$bMiFhGG 801 1$bMiFhGG 906 $aBOOK 912 $a9910298641803321 996 $aDirect Alcohol Fuel Cells$92544230 997 $aUNINA