Qizhen Chai
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View article: Ultrahigh Energy Storage in Relaxor Ferroelectric Ceramics with Core–Shell Grains
Ultrahigh Energy Storage in Relaxor Ferroelectric Ceramics with Core–Shell Grains Open
The achievement of record‐high energy storage performance in relaxor‐ferroelectric bulk ceramics represents a major advancement in the field of dielectric capacitors. Nonetheless, a trade‐off between breakdown strength and polarization has…
View article: Excellent energy storage properties in lead-free ferroelectric ceramics via heterogeneous structure design
Excellent energy storage properties in lead-free ferroelectric ceramics via heterogeneous structure design Open
Dielectric capacitors with ultrahigh power density have emerged as promising candidates for essential energy storage components in electronic and electrical systems. They enable enhanced integration, miniaturization, and lightweight design…
View article: Improving the Electric Energy Storage Performance of Bnt-Based Relaxor Ferroelectric Ceramics with Tunable Oxygen Vacancies and Refined Grains Through Sr1/2nd1/3(Mg1/3nb2/3)O3 Dopant
Improving the Electric Energy Storage Performance of Bnt-Based Relaxor Ferroelectric Ceramics with Tunable Oxygen Vacancies and Refined Grains Through Sr1/2nd1/3(Mg1/3nb2/3)O3 Dopant Open
View article: Enhancing Energy Storage in Lead-Free Ceramics through Synergistic Composition-Induced Nanodomains and Grain Refinement
Enhancing Energy Storage in Lead-Free Ceramics through Synergistic Composition-Induced Nanodomains and Grain Refinement Open
View article: Excellent energy storage properties in lead-free ferroelectric ceramics via heterogeneous structure design
Excellent energy storage properties in lead-free ferroelectric ceramics via heterogeneous structure design Open
Dielectric capacitors with ultrahigh power density have emerged as promising candidates for essential energy storage components in electronic and electrical systems. They enable enhanced integration, miniaturization, and lightweight design…
View article: Improved Energy Storage Performance of Bi0.5na0.5tio3-Based Ceramics Via Delaying Polarization Saturation and Inducing Multi-Domain Structure
Improved Energy Storage Performance of Bi0.5na0.5tio3-Based Ceramics Via Delaying Polarization Saturation and Inducing Multi-Domain Structure Open
View article: Superior Energy Storage Performance in Bi0.5na0.5tio3 Based Ceramics Via Synergistic Design of Multi-Size Domain Construction and Multiple Phase Structures
Superior Energy Storage Performance in Bi0.5na0.5tio3 Based Ceramics Via Synergistic Design of Multi-Size Domain Construction and Multiple Phase Structures Open
View article: Achieving Ultrahigh Energy Storage Density Under Moderate Electric Field in K0.5na0.5nbo3 Ceramics Via Multiple Synergistic Optimization Strategies
Achieving Ultrahigh Energy Storage Density Under Moderate Electric Field in K0.5na0.5nbo3 Ceramics Via Multiple Synergistic Optimization Strategies Open
View article: Achieving Ultrahigh Energy Storage Density Under Moderate Electric Field in K0.5na0.5nbo3 Ceramics Via Multiple Synergistic Optimization Strategies
Achieving Ultrahigh Energy Storage Density Under Moderate Electric Field in K0.5na0.5nbo3 Ceramics Via Multiple Synergistic Optimization Strategies Open
View article: Superior Energy Storage Performance Achieved in Tungsten Bronze Sbcn-Based Ceramics Through Tape-Casting
Superior Energy Storage Performance Achieved in Tungsten Bronze Sbcn-Based Ceramics Through Tape-Casting Open
View article: Achieving High Comprehensive Energy Storage Properties of Bi0.5na0.5tio3-Based Ceramics Via Multiscale Regulation
Achieving High Comprehensive Energy Storage Properties of Bi0.5na0.5tio3-Based Ceramics Via Multiscale Regulation Open
View article: Superior Energy Storage Properties and Optical Transparency Achieved in K0.5na0.5nbo3-Based Dielectric Ceramics Via Multiple Synergistic Strategy
Superior Energy Storage Properties and Optical Transparency Achieved in K0.5na0.5nbo3-Based Dielectric Ceramics Via Multiple Synergistic Strategy Open
View article: Lead-Free (1-X)Bi0.5na0.5tio3-Xcasno3 Ceramics with High Thermal Stability
Lead-Free (1-X)Bi0.5na0.5tio3-Xcasno3 Ceramics with High Thermal Stability Open
View article: Simultaneously with High Transparency and Good Electric Properties in Low Symmetry BNT-Based Ceramics
Simultaneously with High Transparency and Good Electric Properties in Low Symmetry BNT-Based Ceramics Open
View article: Enhanced transmittance and piezoelectricity of transparent K<sub>0.5</sub>Na<sub>0.5</sub>NbO<sub>3</sub> ceramics with Ca(Zn<sub>1/3</sub>Nb<sub>2/3</sub>)O<sub>3</sub> additives
Enhanced transmittance and piezoelectricity of transparent K<sub>0.5</sub>Na<sub>0.5</sub>NbO<sub>3</sub> ceramics with Ca(Zn<sub>1/3</sub>Nb<sub>2/3</sub>)O<sub>3</sub> additives Open
Highly transparent lead-free (1 − x)K0.5Na0.5NbO3–xCa(Zn1/3Nb2/3)O3 (abbreviated as KNN–xCZN) piezoceramics were synthesized by a solid state reaction method.