DocumentCode :
3441915
Title :
Transition from `supercapacitor´ to `battery´ behavior in electrochemical energy storage
Author :
Conway, B.E.
Author_Institution :
Dept. of Chem., Ottawa Univ., Ont., Canada
fYear :
1990
fDate :
25-28 Jun 1990
Firstpage :
319
Lastpage :
327
Abstract :
The storage of electrochemical energy in battery supercapacitor, and double-layer capacitor devices is considered. Supercapacitor systems based on 2-dimensional underpotential deposition reactions are highly reversible and their behavior arises from the pseudocapacitance associated with potential-dependence of 2-dimensional coverage of electroactive adatoms on an electrode substrate surface. Such capacitance can be 10 to 100 times the double-layer capacitance of the same electrode area. An essential fundamental difference from battery behavior arises because, in such systems, the chemical and associated electrode potentials are a continuous function of degree of charge, unlike the thermodynamic behavior of single-phase battery reactants. Quasi-2-dimensional systems, such as hyper-extended hydrous RuO2 , also exhibit large pseudocapacitance. Other examples are the conducting polymer electrodes and Li intercalate systems. The impedance behavior of an RuO2 supercapacitor is illustrated but is far from that expected for an electrostatic capacitor
Keywords :
capacitor storage; cells (electric); 2D underpotential deposition; battery supercapacitor; double-layer capacitor devices; electroactive adatoms; electrochemical energy storage; electrode substrate surface; impedance; pseudocapacitance; supercapacitor systems; thermodynamic behavior; Batteries; Capacitance; Chemicals; Electrodes; Electrostatics; Energy storage; Impedance; Polymers; Supercapacitors; Thermodynamics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Sources Symposium, 1990., Proceedings of the 34th International
Conference_Location :
Cherry Hill, NJ
Print_ISBN :
0-87942-604-7
Type :
conf
DOI :
10.1109/IPSS.1990.145856
Filename :
145856
Link To Document :
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