Document details

Magnesium doping on brownmillerite Ca2FeAlO5

Author(s): Malveiro, J. cv logo 1 ; Ramos, T. cv logo 2 ; Ferreira, L. P. cv logo 3 ; Waerenborgh, J. C. cv logo 4 ; Nunes, M. R. cv logo 5 ; Godinho, M. cv logo 6 ; Carvalho, M. D. cv logo 7

Date: 2007

Persistent ID: http://hdl.handle.net/10316/4374

Origin: Estudo Geral - Universidade de Coimbra

Subject(s): Brownmillerite; Self-combustion synthesis; Mössbauer spectroscopy


Description
Ca2FeAl1-xMgxO5 (x=0, 0.05 and 0.1) compounds adopting the brownmillerite-type structure were prepared by a self-combustion route using two different fuels. Characterisation was performed using X-ray powder diffraction, Mössbauer spectroscopy, magnetisation measurements, chemical analysis, scanning electron microscopy and 4-point dc conductivity measurements. Global results indicate that the solubility limit was reached for x=0.1. An antiferromagnetic behaviour was detected for all studied compositions, with magnetic ordering temperatures of 340 and 290 K for x=0 and 0.05, respectively. Mg doping increases the number of iron cations in tetrahedral sites, which induces magnetisation enhancement at low temperatures through the coupling between octahedral iron cations in different octahedral planes. The compounds exhibit semiconductor behaviour and Mg2+ doping yields a significant enhancement of the total conductivity, which can be essentially attributed to the presence of Fe4+ ions. http://www.sciencedirect.com/science/article/B6WM2-4NHV4TY-1/1/653d73d5934c5cbcec36a94c70202e25
Document Type Article
Language English
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