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Studies of the temperature coefficient of capacitance (TCC) of a new electroceramic composite: Pb(Fe0.5Nb0.5)O3 (PFN)–Cr0.75Fe1.25O3(CRFO)
Authors:F N A Freire  M R P Santos  F M M Pereira  R S T M Sohn  J S Almeida  A M L Medeiros  E O Sancho  M M Costa  A S B Sombra
Affiliation:1. Departamento de Química Organica e Inorganica, Universidade Federal do Ceará, CEP 60455-760, Fortaleza, Ceara, Brasil
2. Laboratório de Telecomunica??es e Ciência e Engenharia dos Materiais (LOCEM), Departamento de Física, Universidade Federal do Ceará, Caixa Postal 6030, CEP 60455-760, Fortaleza, Ceara, Brasil
3. Faculdade de Educa??o, Ciências e Letras do Sert?o Central – Curso de Química, Universidade Estadual do Ceará, CEP 63900-000, Quixada, Ceara, Brasil
4. Departamento de Engenharia de Teleinformática, Universidade Federal do Ceará, CEP 60455-970, Fortaleza, Ceara, Brasil
5. Departamento de Física, Universidade Federal de Matogrosso, Cuiabá, Brasil
Abstract:In this paper we did a study of the dielectric properties: capacitance (C), dielectric permittivity(ε), electric modulus(M) and dielectric loss(tangα)) in the radio-frequency(RF) and microwave (MW) frequency range as a function of temperature and the temperature coefficient of capacitance (TCC) of the composites Pb(Fe1/2Nb1/2)O3(PFN)]Z–CrYFe2−YO3(CRFO)]100−Z where Z = 0, 10, 50, 90 and 100%. The compounds were prepared by the powder-sintering and the X-ray diffraction (XRD) was used in this study using the Rietveld procedure. The X-ray analysis shows that PFN phase is tetragonal where the CRFO phase belongs to a trigonal structure. The capacitance, dielectric permittivity, electric modulus and loss were studied in the frequency range of 100 Hz to 1GHz and temperature range of 25–100 °C. The values of TCC for all the samples are presenting positive values. The study of the electric modulus (M) as a function of frequency and temperature lead to the measurement of the activation energy (Eac), which is directed linked to the relaxation process associated to the interfacial polarization effect in the samples. The study of the electrical properties in the RF and MW range of frequencies is important in view of possible applications of these composites as future components in RF and MW circuits.
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