Ferroelectricity and phase transitions INH2(UO2)2(AsO4)2·8H2O
M.A.R. de Benyacar, Hilda L. de Dussel
Abstract
M.A.R. de Benyacar, Hilda L. de Dussel
Abstract
Dielectric behaviour studies have been carried out on H2(UO2)2(AsO4)2·8H2O single crystals. The first member of a new family of ferroelectric and antiferroelectric materials. The crystal shows two phase transitions: above room temperature it behaves as a dielectric with small losses (paraelectric phase), between room temperatures and -20°C it behaves as an antiferroelectric material (showing domain, structure) and below -20°C it is ferroelectric. Once the crystal has become ferroelectric it can be heated up to 30°C and remains for some time in a ferroelectric state.
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Dielectric behaviour studies have been carried out on H2(UO2)2(AsO4)2·8H2O single crystals. The first member of a new family of ferroelectric and antiferroelectric materials. The crystal shows two phase transitions: above room temperature it behaves as a dielectric with small losses (paraelectric phase), between room temperatures and -20°C it behaves as an antiferroelectric material (showing domain, structure) and below -20°C it is ferroelectric. Once the crystal has become ferroelectric it can be heated up to 30°C and remains for some time in a ferroelectric state.
Key concepts: Ferroelectricity, Antiferroelectricity, Materials science, Dielectric, Condensed matter physics, Phase transition, Phase (matter), Crystal (programming language)