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(Referência obtida automaticamente do Web of Science, por meio da informação sobre o financiamento pela FAPESP e o número do processo correspondente, incluída na publicação pelos autores.)

Synthesis, structure and magnetic properties of Y3Fe5-xAlxO12 garnets prepared by the soft chemical method

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Autor(es):
Silva Ortega, Pedro Paulo [1] ; Ramirez, Miguel Angel [1] ; Foschini, Cesar Renato [2] ; Garcia, Filiberto Gonzalez [3] ; Cilense, Mario [4] ; Simoes, Alexandre Zirpoli [1]
Número total de Autores: 6
Afiliação do(s) autor(es):
[1] Univ Estadual Paulista Unesp, Fac Engn Guaratingueta, Ave Dr Ariberto Pereira da Cunha 333, BR-12516410 Guaratingueta, SP - Brazil
[2] Univ Estadual Paulista UNESP, Fac Engn Bauru, Dept Engn Mecan, BR-17033360 Bauru, SP - Brazil
[3] Univ Fed Itajuba, Inst Fis & Quim, BR-37500903 Minas Gerais, MG - Brazil
[4] Univ Estadual Paulista Unesp, Inst Quim, Lab Interdisciplinar Ceram LIEC, BR-1480090 Araraquara, SP - Brazil
Número total de Afiliações: 4
Tipo de documento: Artigo Científico
Fonte: PROCESSING AND APPLICATION OF CERAMICS; v. 8, n. 4, p. 211-218, 2014.
Citações Web of Science: 4
Resumo

A study was undertaken about the structural, morphological and magnetic properties at room temperature of crystalline aluminium substituted yttrium iron garnet, YIG (Y3Fe5-xAlxO12 with 1.5 < x < 1.7) nanoparticles prepared by polymeric precursor method at the temperature of 700 degrees C for 2 hours. The single-phase character and the well-defined structure of YIG nanoparticles were confirmed by X-ray diffraction, excluding the presence of any other phases. The Raman spectra showed that the changes of lattice vibration would influence interaction between the Fe ion and the host. Mean crystallite size of the single-phase powder was about 46-65 nm. Particles' morphology was investigated by high-resolution transmission electron microscopy, which shows that the particles were agglomerated. From hysteresis loops, particles' efficiency range from 91.4% to 95.9% as Fe/Al ratio decreases. Saturation magnetization was affected by the particle size and Fe/Al stoichiometric ratio. We observe that the saturation magnetization increases as the Fe/Al ratio is raised due to enhancement of the surface spin effects. (AU)

Processo FAPESP: 08/57872-1 - Instituto Nacional de Ciências dos Materiais em Nanotecnologia
Beneficiário:Elson Longo da Silva
Modalidade de apoio: Auxílio à Pesquisa - Temático
Processo FAPESP: 13/07296-2 - CDMF - Centro de Desenvolvimento de Materiais Funcionais
Beneficiário:Elson Longo da Silva
Modalidade de apoio: Auxílio à Pesquisa - Centros de Pesquisa, Inovação e Difusão - CEPIDs