Electric field-revealed precursor ferroelectric properties of low lithium ion-doped KTaO3
Author:
Affiliation:
1. Institute of Molecular Physics; Polish Academy of Science; PL 60-179 Poznań Poland
2. Institute of Materials Science; University of Silesia; PL 40-007 Katowice Poland
Funder
Polish National Center of Sciences (NCN)
Publisher
Wiley
Subject
Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference46 articles.
1. Dielectric Constant in Perovskite Type Crystals
2. Some Transport Properties of Oxygen-Deficient Single-Crystal Potassium Tantalate (KTaO3)
3. SrTiO3: An intrinsic quantum paraelectric below 4 K
4. Influence of lattice polarizability on interacting Li-induced dipoles distributed in incipient ferroelectricKTaO3
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1. Linear and nonlinear dielectric response of the first-order ferroelectric phase transition in K0.92Li0.08TaO3 under dc electric field;Materials Chemistry and Physics;2018-11
2. Normal and abnormal dielectric relaxation behavior in KTaO3 ceramics;RSC Advances;2017
3. Origin of the first-order ferroelectric phase transition in K 0.957 Li 0.043 TaO 3 solid solution;Materials Research Bulletin;2016-12
4. Relaxation Processes of Potassium Tantalate Doped by Lithium;The Journal of Physical Chemistry A;2016-11-07
5. Coexistence of the relaxor-like and ferroelectric behavior in K1-xLixTaO3;Phase Transitions;2016-06-22
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