DocumentCode
2791844
Title
The electrical conduction processes in organic materials considered by a new concept of the thermally stimulated current
Author
Maeta, Shigeyoshi ; Suzuki, Hiroaki ; Yoshida, Fukuzo
Author_Institution
Dept. of Electr. Eng., Osaka Inst. of Technol., Japan
fYear
1991
fDate
8-12 Jul 1991
Firstpage
97
Abstract
Important concepts in the promotion of TSC (thermally stimulated current) research are described, and the distribution law of carrier-trap states is reported. The concept of organization is established upon the basis of the concept of the `fundamental element´. The concept utilized to organize the fundament elements originally, the concept used to stabilize the organized elements, and the concept of `purification´ are key in the evaluation of the exact TSC parameters. They make possible the perfect autoseparation of the composite TSC curve into single curves. Moreover, the concept of purification is an indispensable method for determining sufficient figures for discussing the main subject. The method established from the concept of `purity´ by which one can calculate the TSC curve without any ambiguities supports these perfect autoseparation processes. Upon the `organized ground´ established by these concepts, the distribution law of carrier-trap states in organic materials is revealed and discussed
Keywords
electron traps; hole traps; organic compounds; thermally stimulated currents; TSC; anthracene; autoseparation processes; carrier-trap states; electrical conduction processes; fundament elements; organic materials; organized ground; purification; thermally stimulated current; Bonding forces; Crystals; Laser noise; Laser stability; Noise level; Optical pulse generation; Organic materials; Purification; Thermal conductivity; Thermal engineering;
fLanguage
English
Publisher
ieee
Conference_Titel
Properties and Applications of Dielectric Materials, 1991., Proceedings of the 3rd International Conference on
Conference_Location
Tokyo
Print_ISBN
0-87942-568-7
Type
conf
DOI
10.1109/ICPADM.1991.172015
Filename
172015
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