|
Volumn 3, Issue 5, 2008, Pages 593-595
|
Room temperature operation of surface-conduction single chamber fuel cell using a novel inorganic electrolyte as proton conductor
|
Author keywords
Electrochemical sensors; Energy microchips; Gas mixture; Inorganic electrolyte film; Plasma microtechnology; Room temperature operation; Single chamber fuel cell; Surface conduction of the proton
|
Indexed keywords
ALUMINA;
CHEMICAL SENSORS;
CURING;
DIRECT ENERGY CONVERSION;
DRYING;
ELECTRIC BATTERIES;
ELECTROCHEMISTRY;
ELECTROLYSIS;
ELECTROLYTES;
FUEL CELLS;
GASES;
HEAT CONDUCTION;
HYDROGEN;
LEAD ALLOYS;
LIGHT METALS;
MIXTURES;
NONMETALS;
OXYGEN;
PROTONS;
SOLID OXIDE FUEL CELLS (SOFC);
ALUMINUM FILMS;
DRY AND WET;
DRY GASES;
ELECTROCHEMICAL SENSORS;
ELECTRODE ARRANGEMENTS;
ENERGY MICROCHIPS;
GAS MIXTURE;
INORGANIC ELECTROLYTE FILM;
INORGANIC ELECTROLYTES;
OPEN-CIRCUIT VOLTAGE;
PLASMA MICROTECHNOLOGY;
PROTON CONDUCTORS;
ROOM TEMPERATURES;
ROOM-TEMPERATURE OPERATION;
SINGLE-CHAMBER FUEL CELL;
SURFACE-CONDUCTION OF THE PROTON;
WET GAS;
GAS MIXTURES;
|
EID: 51849099969
PISSN: 19314973
EISSN: 19314981
Source Type: Journal
DOI: 10.1002/tee.20318 Document Type: Article |
Times cited : (2)
|
References (4)
|