Structural relaxation of ferroelectric phase in hard sodium lithium niobate solid solutions studied by solid-state NMR. [PDF]
Logrado M+4 more
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Enhanced Strain Properties in KNN-Based Lead-free Piezoelectric Multilayer Actuators by Low-Temperature Texture Engineering. [PDF]
Nie J+7 more
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Advancing inorganic electro-optical materials for 5 G communications: from fundamental mechanisms to future perspectives. [PDF]
Wang H+9 more
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Enhanced Energy Storage Properties of the Relaxor and Antiferroelectric Crossover Ceramic Enabled by a High Entropy Design. [PDF]
Li Y+5 more
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Effect of Na<sup>2+</sup> and Bi<sup>3+</sup> substitution in lead-free BZT-Pr multifunctional ceramics for energy storage and thermal energy conversion. [PDF]
Zouari I+5 more
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Effect of Oxygen Vacancy Concentration on the Electrical Properties and Microstructure of <i>Bi</i><sub>4</sub><i>Ti</i><sub>3</sub><i>O</i><sub>12</sub> Ceramics: Experimental and First-Principles Investigation. [PDF]
Chen T+5 more
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Ferroelectric Ceramics: History and Technology [PDF]
Ferroelectric ceramics were born in the early 1940s with the discovery of the phenomenon of ferroelectricity as the source of the unusually high dielectric constant in ceramic barium titanate capacitors. Since that time, they have been the heart and soul of several multibillion dollar industries, ranging from high‐dielectric‐constant capacitors to ...
G. Haertling
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