DocumentCode :
1492574
Title :
Piezoceramics properties as a function of the structure in the system (K,Na,Li)(Nb,Ta,Sb)O3
Author :
Rubio-Marcos, Fernando ; Navarro-Rojero, María Guadalupe ; Romero, Juan Jose ; Marchet, Pascal ; Fernández, Jose F.
Author_Institution :
Electroceramic Dept., Consejo Superiorde Investig. Cientificas, Madrid, Spain
Volume :
56
Issue :
9
fYear :
2009
fDate :
9/1/2009 12:00:00 AM
Firstpage :
1835
Lastpage :
1842
Abstract :
The influence of the sintering conditions and stoichiometry on the crystalline symmetry and electrical properties of the system (K0.44+xNa0.52Li0.04)(Nb0.86Ta0.10Sb0.04)O3+x/2, with x = -0.06, 0.00, and 0.04, has been evaluated. By lowering the concentration of K cations, a faster stabilization of the tetragonal phase is reached. Increasing the sintering time also leads to the stabilization of the tetragonal phase at room temperature, as evidenced by Raman spectroscopy, thus improving the piezoelectric properties of these materials. The Raman spectra versus temperature showed 2 anomalies at temperatures of ~70 and ~270 to 330degC, associated with polymorphism and the ferro-paraelectric phase transitions, respectively. Active Raman scattering modes are observed above Curie temperature, indicating that the symmetry is not cubic but pseudocubic. This pseudocubic phase is associated with relaxor diffuseness, attributed to composition fluctuations. In addition, the piezoelectric properties were correlated with the tetragonality of the system, showing a linear dependence between the piezoelectric properties and the tetragonality ratio. The ceramics with c/a = 1.011 ratio exhibit enhanced electrical properties, d33 ~255 pC/N and kp ~0.47.
Keywords :
Raman spectra; ferroelectric Curie temperature; ferroelectric transitions; fluctuations; lithium compounds; piezoceramics; potassium compounds; relaxor ferroelectrics; sintering; sodium compounds; stoichiometry; (K0.44+xNa0.52Li0.04)(Nb0.86Ta0.10Sb0.04)O3+0.5x; Curie temperature; Raman spectrum; cations; ceramics; crystalline symmetry; electrical property; ferro-paraelectric phase transition; fluctuations; piezoceramics property; polymorphism; pseudocubic phase; relaxor diffuseness; sintering condition; stoichiometry; tetragonal phase; Ceramics; Crystallization; Fluctuations; Lead compounds; Niobium; Piezoelectric materials; Raman scattering; Spectroscopy; Temperature;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2009.1258
Filename :
5278432
Link To Document :
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