An aqueous-solution based low-temperature pathway to synthesize giant dielectric CaCu3Ti4O12—Highly porous ceramic matrix and submicron sized powder
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference17 articles.
1. Principles and Applications of Ferroelectrics and Related Materials;Lines,2000
2. Origin of Giant Dielectric Response in Nonferroelectric CaCu3Ti4O12: Inhomogeneous Conduction Nature Probed by Atomic Force Microscopy
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1. Phase structure evolution, crystal structure refinement, morphology, and electro-optical properties of heat-treated Ca0.9Ni0.1Cu2.9La0.1Ti4O12;Ceramics International;2020-04
2. Biodegradable polymer modified rGO/PANI/CCTO nanocomposites: Structural and dielectric properties;Materials Today: Proceedings;2018
3. Dielectric and AC conductivity studies of novel porous armalcolite nanocomposite-based humidity sensor;Journal of the American Ceramic Society;2017-06-26
4. Ultra-fast synthesis and properties of high dielectric constant calcium copper titanate (CCT) ceramics synthesized by electric discharge assisted mechanical milling in oxygen and argon plasma;Ceramics International;2015-09
5. A novel low cost non-aqueous chemical route for giant dielectric constant CaCu3Ti4O12 ceramic;Solid State Sciences;2015-05
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