TY - GEN
T1 - Nonlinear conductive spectra of ion-conducting polymers
AU - Tajitsu, Yoshiro
AU - Ueno, Yukihiko
AU - Furukawa, Takeo
PY - 1992/1/1
Y1 - 1992/1/1
N2 - An ion-conducting polymer, tetraethylene oxide-organosiloxane (TEOS) copolymer, was synthesized and the linear and nonlinear complex conductivities were measured as a function of frequency. Observed spectra were reproduced by taking into account the interfacial and electrode polarizations. The most important findings are the very large dielectric relaxation strength and the very long hopping distance in noncrystalline ion-conducting polymers. The large relaxation strength suggests that the TEOS/Li- comprises an inhomogeneous system consisting of highly conductive and less conductive regions. It is speculated that such inhomogeneity governs the conduction mechanisms of the ionic conductor and results in a very long hopping distance. A combination of linear and nonlinear DC conductivities leads to a hopping distance of 200 nm.
AB - An ion-conducting polymer, tetraethylene oxide-organosiloxane (TEOS) copolymer, was synthesized and the linear and nonlinear complex conductivities were measured as a function of frequency. Observed spectra were reproduced by taking into account the interfacial and electrode polarizations. The most important findings are the very large dielectric relaxation strength and the very long hopping distance in noncrystalline ion-conducting polymers. The large relaxation strength suggests that the TEOS/Li- comprises an inhomogeneous system consisting of highly conductive and less conductive regions. It is speculated that such inhomogeneity governs the conduction mechanisms of the ionic conductor and results in a very long hopping distance. A combination of linear and nonlinear DC conductivities leads to a hopping distance of 200 nm.
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M3 - Conference contribution
AN - SCOPUS:0026727488
SN - 0780301129
T3 - Proceedings - International Symposium on Electrets
SP - 165
EP - 170
BT - Proceedings - International Symposium on Electrets
PB - Publ by IEEE
T2 - 7th International Symposium on Electrets
Y2 - 25 September 1991 through 27 September 1991
ER -