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Stress Engineering of Perovskite Ceramics for Enhanced Piezoelectricity and Temperature Stability toward Energy Harvesting
American Chemical Society | 2022| -
Ferroic characterizations, phase transformation, and internal bias field in 0.75Pb(Fe2/3W1/3)O3–0.25PbTiO3 multiferroic ceramic
American Institute of Physics | 2014| -
Construction of high Tc BiScO3-BiFeO3-PbTiO3 and its enhanced piezoelectric properties by sintering in oxygen atmosphere
American Institute of Physics | 2018| -
The influence of A-site strontium ion in controlling the microstructure and electrical properties of P1−xSxZNZT ceramics
American Institute of Physics | 2016| -
Intergranular Particle Bridge Structure Design Strategy Boosts High-Temperature Energy Harvesting Performance of Fine-Grained Ceramics
American Chemical Society | 2021| -
High performance piezocomposites for flexible device application
Royal Society of Chemistry | 2020| -
Delayed thermal depolarization of Bi0.5Na0.5TiO3-BaTiO3 by doping acceptor Zn2+ with large ionic polarizability
American Institute of Physics | 2017| -
Designing a new KBT-based binary solid solution as a candidate for dielectric energy storage materials
American Institute of Physics | 2023| -
Tailored Ceramic–Metal Piezocomposite Energy Harvester with High Current Output by Controlling the Electrical Impedance
American Chemical Society | 2022| -
Advanced FeTiNbO6/poly(vinylidene fluoride) composites with a high dielectric permittivity near the percolation threshold
American Institute of Physics | 2015| -
Flexible piezoelectric energy harvester with an ultrahigh transduction coefficient by the interconnected skeleton design strategy
Royal Society of Chemistry | 2020| -
Normal-relaxor ferroelectric modulation of a-site complex perovskite ferroelectric (K1/2Bi1/2)TiO3 by post-annealing
American Institute of Physics | 2017| -
Advances in lead‐free high‐temperature dielectric materials for ceramic capacitor application
Free accessWiley | 2018| -
Enhanced relaxor behavior and thermal- and frequency-insensitive strain of (Na0.5Bi0.5)0.93Ba0.07Ti1 − x(Mn1/3Nb2/3)xO3 ceramics
American Institute of Physics | 2020|
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