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Excellent electric field-induced strain with high electrostrictive and energy storage performance properties observed in lead-free Bi0.5(Na0.84K0.16)0.5TiO3-Ba(Nb0.01Ti0.99)O3-BiFeO3 ceramics
被引:22
|作者:
Manotham, Supalak
[1
]
Jaita, Pharatree
[1
,2
]
Randorn, Chamnan
[3
]
Rujijanagul, Gobwute
[1
,2
,4
,5
]
Cann, David P.
[6
]
机构:
[1] Chiang Mai Univ, Fac Sci, Dept Phys & Mat Sci, Chiang Mai 50200, Thailand
[2] Chiang Mai Univ, Sci & Technol Res Inst, Chiang Mai 50200, Thailand
[3] Chiang Mai Univ, Fac Sci, Dept Chem, Chiang Mai 50200, Thailand
[4] Chiang Mai Univ, Fac Sci, Res Ctr Phys & Astron, Chiang Mai 50200, Thailand
[5] Chiang Mai Univ, Fac Sci, Mat Sci Res Ctr, Chiang Mai 50200, Thailand
[6] Oregon State Univ, Sch Mech Ind & Mfg Engn, Mat Sci, Corvallis, OR 97331 USA
关键词:
BNKT lead-free ceramics;
BiFeO3;
Large strain;
Electrostrictive;
Energy storage density;
HIGH THERMAL-STABILITY;
PIEZOELECTRIC PROPERTIES;
PHYSICAL-PROPERTIES;
PHASE-TRANSITION;
ULTRAHIGH STRAIN;
GIANT STRAIN;
TEMPERATURE;
DENSITY;
MICROSTRUCTURE;
POLARIZATION;
D O I:
10.1016/j.jallcom.2019.151655
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
In this research, ceramics with a high electromechanical strain based on the composition (1-x) [0.97Bi(0.5)(Na0.84K0.16)(0.5)TiO3-0.03Ba(Ti0.99Nb0.01)O-3]-xBiFeO(3) or (1-x)[BNKT-0.03BNbT]-xBFO (with x = 0, 0.03, 0.05, 0.07, and 0.09 mol fraction) were investigated. All compositions were synthesized via a conventional solid-state mixed oxide method. The effects of the addition of BFO on the phase structure, dielectric, ferroelectric, and piezoelectric properties and electric field-induced strains behavior of BNKT-0.03BNbT ceramics were systematically studied in this work. X-ray diffraction (XRD) analysis revealed that all ceramics exhibited a pure perovskite structure. The coexistence of rhombohedral (R) and tetragonal (T) phases was observed for all compositions. The electric field-induced strain increased with increasing BFO content and attained a maximum value of S-max = 0.65% and d*(33) = 1161 pm/V (@40 kV) for the composition x = 0.05 at room temperature (RT). The bipolar strain behavior exhibited minimal asymmetry and a low driving electric field. The composition also exhibited a high electrostrictive response (Q(33) similar to 0.039 m(4)/C-2). In addition, the x = 0.09 composition showed excellent energy storage properties, with an energy storage density of 0.91 J/cm(3) at 125 degrees C, high normalized energy storage density (similar to 0.14 mu C/mm(2)), thermal stability (7% for 75-150 degrees C) and energy storage efficiency (eta = 87% @ 125 degrees C). These results suggest that the (1-x)[BNKT-0.03BNbT]-xBFO ceramics are promising as lead-free piezoelectric material candidates, and are also suitable for both actuator and high temperature energy storage applications. (C) 2019 Elsevier B.V. All rights reserved.
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