High-Performance Barium Titanate, Carbon Nanotube, and Styrene-Butadiene Rubber-Based Single Composite TENG for Energy Harvesting and Handwriting Recognition. [PDF]
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Enhancing radiostrontium uptake by a layered titanate perovskite via sustainable electrochemically switched ion exchange. [PDF]
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Time-Dependent Network-Forming Dispersion Behavior of Barium Titanate Slurries and Their Impact on Green Sheet Properties. [PDF]
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Low-temperature fabrication of BTO-based relaxor ferroelectric thick films with multi-layered architecture. [PDF]
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Efficient electrocatalytic water splitting performance of an SrTiO<sub>3</sub>/g-C<sub>3</sub>N<sub>4</sub> composite for hydrogen evolution in an acidic medium. [PDF]
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Hydrothermal synthesis of lead titanate and lead zirconate titanate electroceramic particles
Chemical Engineering Communications, 2003Hydrothermal synthesis of two lead-based perovskite powder systems, lead titanate and lead zirconate titanate, was investigated. Phase-pure perovskite lead titanate and lead zirconate titanate with various morphologies have been synthesized by hydrothermal methods at 150° and 175°C, respectively.
Ender Suvaci, James H Adair
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Lead titanate and lead zirconate titanate piezoelectric glass-ceramics
Ferroelectrics, 1994Abstract The crystallization behavior and electrical properties of a piezoelectric glass-ceramic system consisting of lead titanate (PT) or lead zirconate titanate (PZT) in a lead borosilicate matrix is presented. Glass powders of compositions in this system densify at 650°C, and crystallize the ferroelectric PT or PZT phases.
B. Houng, M. J. Haun
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Processing of porous lead titanate and lead zirconate titanate coatings
Le Journal de Physique IV, 1998Porous lead titanate (PT) and lead zirconate titanate (PZT) coatings were prepared by spin coating alkoxide solutions modified with benzoic acid. Carrying out the spin coating in a humid atmosphere (>30% RH) promoted the formation of porous microstructures. The variations in the chemical structure of the alkoxide and the coating microstructure indicate
J. S. Wright, L. F. Francis
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Fatigue of lead titanate and lead zirconate titanate thin films
Physics of the Solid State, 2008The fatigue of lead titanate and lead zirconate titanate ferroelectric thin films, i.e., a change in the polarization as a function of the number of switching cycles in an external electric field, is investigated experimentally. The threshold numbers of switching cycles are determined to be 1010–1011 for the lead titanate films and 109–1010 for the ...
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