DocumentCode :
1313356
Title :
Electrical properties and impedance spectroscopy of pure and copper-oxide-added potassium sodium niobate ceramics
Author :
Alkoy, Ebru Mensur ; Berksoy-Yavuz, Ayse
Author_Institution :
Fac. of Eng. & Natural Sci., Maltepe Univ., Istanbul, Turkey
Volume :
59
Issue :
10
fYear :
2012
fDate :
10/1/2012 12:00:00 AM
Firstpage :
2121
Lastpage :
2128
Abstract :
Pure and 1 mol% CuO-added lead-free potassium sodium niobate K0.5Na0.5NbO3 (KNN) ceramics were prepared by the conventional solid-state calcination method. Copper oxide was mainly used as a sintering aid in the KNN structure. Microstructural analyses clearly showed that the CuO formed a secondary phase at the grain boundaries. Impedance spectroscopy was used as a tool to analyze the electrical behavior of KNN ceramics as a function of frequency from 100 Hz to 10 MHz at various temperatures. The impedance studies proved that CuO led to the formation of a secondary grain boundary phase, as well as creation of highly mobile point defects. The relaxation time of copper-added samples was less than that of pure KNN. This shorter time indicated a higher space charge mobility for CuO-added samples. The thermal activation energy for relaxation of charge carriers (Eg) was calculated as 0.73 eV for CuO-added samples.
Keywords :
calcination; ceramics; copper compounds; crystal microstructure; electrical conductivity; electrochemical impedance spectroscopy; grain boundaries; potassium compounds; sintering; sodium compounds; space charge; vacancies (crystal); K0.5Na0.5NbO3; K0.5Na0.5NbO3-CuO; charge carrier relaxation; copper-oxide-added potassium sodium niobate ceramics; electrical properties; frequency 100 Hz to 10 MHz; grain boundaries; impedance spectroscopy; microstructural analyses; point defects; relaxation time; sintering; solid-state calcination; space charge mobility; thermal activation energy; vacancies; Ceramics; Conductivity; Frequency measurement; Grain boundaries; Hysteresis; Impedance; Spectroscopy;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2012.2438
Filename :
6327484
Link To Document :
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