TY - JOUR
T1 - Phase structure, microstructure and piezoelectric properties of perovskite (K0.5Na0.5)0.95Li0.05NbO3-Bi0.5(K0.15Na0.85)0.5TiO3 lead-free ceramics
AU - Chen, Lei
AU - Fan, Huiqing
AU - Zhang, Miaohua
AU - Yang, Chao
AU - Chen, Xiuli
PY - 2010/3/4
Y1 - 2010/3/4
N2 - Lead-free ceramics (1 - x)(K0.5Na0.5)0.95Li0.05NbO3-xBi0.5(K0.15Na0.85)0.5TiO3 [(1 - x)KNLN-xBKNT] with x = 0-0.04 were successfully synthesized by conventional solid-state sintering. Effects of Bi0.5(K0.15Na0.85)0.5TiO3 (BKNT) on the phase structure, microstructure and electrical properties of the (1 - x)KNLN-xBKNT ceramics were investigated. BKNT strongly affected the sintering behavior, densification and microstructure of the ceramics. X-ray diffraction analysis revealed that all the (1 - x)KNLN-xBKNT ceramics possessed pure perovskite structure, showing symmetries of orthorhombic at x < 0.005, and tetragonal at x ≥ 0.015 at room temperature. Coexistence of orthorhombic and tetragonal phases was identified in the range of 0.005 ≤ x < 0.015. The 0.99KNLN-0.01BKNT ceramics showed the optimum piezoelectric, ferroelectric properties and high Curie temperature, which were as follows: d33 = 240 pC/N, kp = 0.455, Pr = 20 μC/cm2, Ec = 20.8 kV/cm and Tc = 469 °C. The mechanism of the enhanced piezoelectric properties was also discussed. These results indicate that this system looks a promising candidate for lead-free piezoelectric materials.
AB - Lead-free ceramics (1 - x)(K0.5Na0.5)0.95Li0.05NbO3-xBi0.5(K0.15Na0.85)0.5TiO3 [(1 - x)KNLN-xBKNT] with x = 0-0.04 were successfully synthesized by conventional solid-state sintering. Effects of Bi0.5(K0.15Na0.85)0.5TiO3 (BKNT) on the phase structure, microstructure and electrical properties of the (1 - x)KNLN-xBKNT ceramics were investigated. BKNT strongly affected the sintering behavior, densification and microstructure of the ceramics. X-ray diffraction analysis revealed that all the (1 - x)KNLN-xBKNT ceramics possessed pure perovskite structure, showing symmetries of orthorhombic at x < 0.005, and tetragonal at x ≥ 0.015 at room temperature. Coexistence of orthorhombic and tetragonal phases was identified in the range of 0.005 ≤ x < 0.015. The 0.99KNLN-0.01BKNT ceramics showed the optimum piezoelectric, ferroelectric properties and high Curie temperature, which were as follows: d33 = 240 pC/N, kp = 0.455, Pr = 20 μC/cm2, Ec = 20.8 kV/cm and Tc = 469 °C. The mechanism of the enhanced piezoelectric properties was also discussed. These results indicate that this system looks a promising candidate for lead-free piezoelectric materials.
KW - Ceramics
KW - Phase transitions
KW - Piezoelectricity
KW - Sintering
UR - http://www.scopus.com/inward/record.url?scp=76549130931&partnerID=8YFLogxK
U2 - 10.1016/j.jallcom.2009.11.084
DO - 10.1016/j.jallcom.2009.11.084
M3 - 文章
AN - SCOPUS:76549130931
SN - 0925-8388
VL - 492
SP - 313
EP - 319
JO - Journal of Alloys and Compounds
JF - Journal of Alloys and Compounds
IS - 1-2
ER -