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Ultrahigh strain response with fatigue-free behavior in (Bi<sub>0.5</sub>Na<sub>0.5</sub>)TiO<sub>3</sub>-based lead-free piezoelectric ceramics

https://doi.org/10.1088/0022-3727/48/47/472001
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The 33 checked references that resolve
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Effect of lanthanum doping on the structural, ferroelectric, and strain properties of Bi1/2(Na0.82K0.18)1/2TiO3 lead-free ceramics
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Large electric-field-induced strain in Zr-modified lead-free Bi0.5(Na0.78K0.22)0.5TiO3 piezoelectric ceramics
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Incipient piezoelectrics and electrostriction behavior in Sn-doped Bi1/2(Na0.82K0.18)1/2TiO3 lead-free ceramics
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Strain enhancement in Bi1/2(Na0.82K0.18)1/2TiO3 lead-free electromechanical ceramics by co-doping with Li and Ta
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Switching of morphotropic phase boundary and large strain response in lead-free ternary (Bi0.5Na0.5)TiO3–(K0.5Bi0.5)TiO3–(K0.5Na0.5)NbO3 system
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Phase transitional behavior and electric field-induced large strain in alkali niobate-modified Bi0.5(Na0.80K0.20)0.5TiO3 lead-free piezoceramics
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The Composition and Temperature‐Dependent Structure Evolution and Large Strain Response in (1− <i>x</i> )( <scp> <scp>Bi</scp> </scp> <sub>0.5</sub> <scp> <scp>Na</scp> </scp> <sub>0.5</sub> ) <scp> <scp>TiO</scp> </scp> <sub>3</sub> − <i>x</i> <scp> <scp>Ba</scp> </scp> ( <scp> <scp>Al</scp> </scp> <sub>0.5</sub> <scp> <scp>Ta</scp> </scp> <sub>0.5</sub> ) <scp> <scp>O</scp> </scp> <sub>3</sub> Ceramics
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Effect of <scp> <scp>BiMeO</scp> </scp> <sub>3</sub> on the Phase Structure, Ferroelectric Stability, and Properties of Lead‐Free Bi <sub>0.5</sub> (Na <sub>0.80</sub> K <sub>0.20</sub> ) <sub>0.5</sub> TiO <sub>3</sub> Ceramics
resolves10.1063/1.4816047
Phase transitions, relaxor behavior, and large strain response in LiNbO3-modified Bi0.5(Na0.80K0.20)0.5TiO3 lead-free piezoceramics
resolves10.1142/S179360471000083X
EFFECT OF SUBSTITUTION OF <font>K</font> FOR <font>Na</font> ON THE FERROELECTRIC STABILITY AND PROPERTIES OF (<font>Bi</font><sub>1/2</sub><font>Na</font><sub>1/2</sub>)<font>TiO</font><sub>3</sub>-<font>BaTiO</font><sub>3</sub>-(<font>K</font><sub>0.5</sub><font>Na</font><sub>0.5</sub>)<font>NbO</font><sub>3</sub>
resolves10.7567/JJAP.50.055802
Effect of K<sub>0.5</sub>Na<sub>0.5</sub>NbO<sub>3</sub>on Properties at and off the Morphotropic Phase Boundary in Bi<sub>0.5</sub>Na<sub>0.5</sub>TiO<sub>3</sub>–Bi<sub>0.5</sub>K<sub>0.5</sub>TiO<sub>3</sub>Ceramics
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Relaxor Characteristics of Morphotropic Phase Boundary <scp> (Bi <sub>1/2</sub> Na <sub>1/2</sub> )TiO <sub>3</sub> –(Bi <sub>1/2</sub> K <sub>1/2</sub> )TiO <sub>3</sub> </scp> Modified with <scp> Bi(Zn <sub>1/2</sub> Ti <sub>1/2</sub> )O <sub>3</sub> </scp>
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Electromechanical strain in Bi(Zn1/2Ti1/2)O3–(Bi1/2Na1/2)TiO3–(Bi1/2K1/2)TiO3 solid solutions
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Temperature‐Dependent Properties of ( <scp> <scp>Bi</scp> </scp> <sub>1/2</sub> <scp> <scp>Na</scp> </scp> <sub>1/2</sub> ) <scp> <scp>TiO</scp> </scp> <sub>3</sub> –( <scp> <scp>Bi</scp> </scp> <sub>1/2</sub> <scp> <scp>K</scp> </scp> <sub>1/2</sub> ) <scp> <scp>TiO</scp> </scp> <sub>3</sub> – <scp> <scp>SrTiO</scp> </scp> <sub>3</sub> Lead‐Free Piezoceramics
resolves10.1016/j.matchemphys.2013.11.035
Field-induced strain and polarization response in lead-free Bi1/2(Na0.80K0.20)1/2TiO3–SrZrO3 ceramics
resolves10.1111/j.1551-2916.2009.03573.x
Temperature‐Insensitive Large Strain of (Bi <sub>1/2</sub> Na <sub>1/2</sub> )TiO <sub>3</sub> –(Bi <sub>1/2</sub> K <sub>1/2</sub> )TiO <sub>3</sub> –(K <sub>0.5</sub> Na <sub>0.5</sub> )NbO <sub>3</sub> Lead‐Free Piezoceramics
resolves10.1111/j.1551-2916.2011.04595.x
Phase Transition, Electrical Properties, and Temperature‐Insensitive Large Strain in <scp> BiAlO <sub>3</sub> </scp> ‐Modified <scp> Bi <sub>0.5</sub> (Na <sub>0.75</sub> K <sub>0.25</sub> ) <sub>0.5</sub> TiO <sub>3</sub> </scp> Lead‐Free Piezoelectric Ceramics
resolves10.1063/1.3121203
Origin of the large strain response in (K0.5Na0.5)NbO3-modified (Bi0.5Na0.5)TiO3–BaTiO3 lead-free piezoceramics
resolves10.1103/PhysRevB.83.054118
Composition-induced antiferroelectric phase and giant strain in lead-free<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mrow><mml:mo stretchy="false">(</mml:mo><mml:msub><mml:mi mathvariant="normal">Na</mml:mi><mml:mrow><mml:mi>y</mml:mi></mml:mrow></mml:msub><mml:mo>,</mml:mo><mml:msub><mml:mi mathvariant="normal">Bi</mml:mi><mml:mrow><mml:mi>z</mml:mi></mml:mrow></mml:msub><mml:mo stretchy="false">)</mml:mo><mml:msub><mml:mi mathvariant="normal">Ti</mml:mi><mml:mrow><mml:mn>1</mml:mn><mml:mo>−</mml:mo><mml:mi>x</mml:mi></mml:mrow></mml:msub><mml:msub><mml:mi mathvariant="normal">O</mml:mi><mml:mrow><mml:mn>3</mml:mn><mml:mo stretchy="false">(</mml:mo><mml:mn>1</mml:mn><mml:mo>−</mml:mo><mml:mi>x</mml:mi><mml:mo stretchy="false">)</mml:mo></mml:mrow></mml:msub><mml:mo>−</mml:mo><mml:mi>x</mml:mi><mml:msub><mml:mi mathvariant="normal">BaTiO</mml:mi><mml:mrow><mml:mn>3</mml:mn></mml:mrow></mml:msub></mml:mrow></mml:math>ceramics
resolves10.1016/j.scriptamat.2014.03.027
Bipolar fatigue-resistant behavior in ternary Bi0.5Na0.5TiO3–BaTiO3–SrTiO3 solid solutions
resolves10.1063/1.4738770
Bipolar piezoelectric fatigue of Bi(Zn<sub>0.5</sub>Ti<sub>0.5</sub>)O<sub>3</sub>-(Bi<sub>0.5</sub>K<sub>0.5</sub>)TiO<sub>3</sub>-(Bi<sub>0.5</sub>Na<sub>0.5</sub>)TiO<sub>3</sub> Pb-free ceramics
resolves10.1002/adem.200500117
Fatigue In Bulk Lead Zirconate Titanate Actuator Materials
resolves10.1063/1.3182679
Electric-field-induced phase transformation at a lead-free morphotropic phase boundary: Case study in a 93%(Bi0.5Na0.5)TiO3–7% BaTiO3 piezoelectric ceramic
resolves10.1063/1.4770326
Electric-field-induced and spontaneous relaxor-ferroelectric phase transitions in (Na1/2Bi1/2)1 − xBaxTiO3
resolves10.3938/jkps.60.212
Strain enhancement of lead-free Bi1/2(Na0.82K0.18)1/2TiO3 ceramics by Sn doping
resolves10.1016/j.jeurceramsoc.2015.03.016
Effect of different templates on structure evolution and large strain response under a low electric field in &lt;00l&gt;-textured lead-free BNT-based piezoelectric ceramics
resolves10.1021/cm8004634
Reinvestigation of Phase Transitions in Na<sub>0.5</sub>Bi<sub>0.5</sub>TiO<sub>3</sub> by TEM. Part I: First Order Rhombohedral to Orthorhombic Phase Transition
resolves10.1016/S0022-3697(96)00200-4
THE DEFECT STRUCTUFE OF SrTi 1−x Fe x O 3−y ( x = 0–0.8) INVESTIGATED BY ELECTRICAL CONDUCTIVITY MEASUREMENTS AND ELECTRON ENERGY LOSS SPECTROSCOPY (EELS)
resolves10.1111/j.1151-2916.1978.tb09357.x
Electrical Conductivity in Lead Zirconate‐Titanate Ceramics
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