Revealing the influence of Nb-doping on the crystal structure and electromechanical properties of (K, Bi)(Mg, Ti, Nb)O3 ceramics

被引:0
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作者
Aurang Zeb
Fazli Akram
Muhammad Habib
Qamar Iqbal
Amir Ullah
Ihsan Ullah
Nasir Ali
S. J. Milne
Muhammad Sheeraz
Conrad Ingram
Shahid Iqbal
Fayaz Hussain
Adnan Younis
P. T. Tho
Chang Won Ahn
机构
[1] Islamia College,Department of Physics
[2] Clark Atlanta University,Department of Chemistry
[3] Central South University,State Key Laboratory of Powder Metallurgy
[4] Riphah International University,Department of Physics
[5] Kyungpook National University,Department of Chemistry
[6] Zhejiang University,Department of Physics, State Key Laboratory of Silicon Materials
[7] University of Leeds,School of Chemical and Process Engineering
[8] University of Ulsan,Department of Physics and Energy Harvest
[9] University of Wisconsin-La Crosse,Storage Research Center (EHSRC)
[10] NED University of Engineering and Technology,Department of Physics
[11] University of Bahrain,Department of Materials Engineering
[12] Van Lang University,Department of Physics, College of Science
来源
关键词
Relaxor-ferroelectric; Lead-free ceramics; Nb-doping; KBT-BMT; Morphotropic phase boundary; Electromechanical properties;
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摘要
Nb-modified lead-free ceramics (K0.48Bi0.52)(Mg0.02Ti0.98−xNbx)O3, (KBT-BMTNbx with x = 0.00 − 0.05) were synthesized by a conventional solid-state reaction route followed by furnace cooling. The effects of Nb-doping on the structural properties and electrical properties of KBT-BMTNbx ceramics have been investigated. The X-ray diffraction pattern indicates a mixed tetragonal and cubic phase for the pure KBT-BMTNbx ceramics. Therefore, a large piezoelectric actuator coefficient d33* ≈ 700 pm/V, piezoelectric sensor coefficient (d33 ≈ 133 pC/N) along with remnant polarization (Pr ≈ 17.5 µC/cm2), maximum electromechanical strain ≈ 0.35% and maximum temperature (Tm ≈ 336 ºC) were obtained for KBT-BMTNbx. However, with Nb-doping, a compositionally driven phase transformation occurred from mixed rhombohedral and tetragonal phases to cubic phase. Because of the excess Nb-doping in the KBT-BMT ceramics, the grain size suddenly decreased, as a result, the long-range ferroelectric phase was converted into a short-range relaxor phase. Hence, a low dielectric loss tanδ ≈ 0.02 was achieved at x = 0.02 composition. This superior dielectric performance is correlated to the crystal structure morphotropic phase boundary, optimum grain size (≈ 2 μm), maximum lattice distortion, and soft-ferroelectric effect induced by the donor doping. The main aim of recent research is to investigate Pr, d33, d33*, Smax, and reduced tanδ for practical applications in the real world.
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页码:122 / 132
页数:10
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