DocumentCode :
1059238
Title :
Dielectric properties of epoxy/clay nanocomposites - effects of curing agent and clay dispersion method
Author :
Tagami, N. ; Okada, M. ; Hirai, N. ; Ohki, Y. ; Tanaka, T. ; Imai, T. ; Harada, Masaaki ; Ochi, Mototaka
Author_Institution :
Waseda Univ., Tokyo
Volume :
15
Issue :
1
fYear :
2008
fDate :
2/1/2008 12:00:00 AM
Firstpage :
24
Lastpage :
32
Abstract :
Effects of the differences in the curing agent and filler dispersion method on the dielectric properties were examined for epoxy/clay nanocomposites. Irrespective of the clay dispersion method, relative permittivity and electrical conductivity are higher in the samples cured with the amine. Moreover, negative heterocharge accumulates in the vicinity of the anode in the amine-cured samples, whereas positive homocharge accumulates in the acid anhydride-cured samples. From the results of UV photon absorption and PL measurement, the bandgap or the energy at which the photon absorption increases drastically is smaller in the amine-cured samples than in the acid anhydride-cured samples. Ion migration can occur easily in the amine-cured samples whose electrical conductivity and relative permittivity are higher than the acid anhydride-cured samples. The curing agent gives the strongest effect, while the existence of clay affects secondly and the filler dispersion method has the weakest effect.
Keywords :
clay; composite insulating materials; curing; dielectric materials; diffusion; electrical conductivity; energy gap; filled polymers; nanocomposites; optical constants; permittivity; photoluminescence; space charge; ultraviolet spectra; UV photon absorption; acid anhydride curing; amine curing; anode; bandgap; curing agent; dielectric properties; electrical conductivity; epoxy-clay nanocomposites; filler dispersion method; ion migration; negative heterocharge; photoluminescence; polymer nanocomposites; positive homocharge; relative permittivity; space charge distribution; Anodes; Conductivity; Curing; Dielectrics; Dispersion; Electromagnetic wave absorption; Energy measurement; Nanocomposites; Permittivity measurement; Photonic band gap;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/T-DEI.2008.4446733
Filename :
4446733
Link To Document :
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