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Raúl E. Carbonio

Researcher at National University of Cordoba

Publications -  104
Citations -  1576

Raúl E. Carbonio is an academic researcher from National University of Cordoba. The author has contributed to research in topics: Crystal structure & Perovskite (structure). The author has an hindex of 21, co-authored 100 publications receiving 1384 citations. Previous affiliations of Raúl E. Carbonio include Spanish National Research Council & National Scientific and Technical Research Council.

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Crystal Structure Refinement and Stability of LaFexNi1−xO3Solid Solutions

TL;DR: In this article, the crystal structure refinement of LaFe{sub x}N{sub 1-x}, O{sub 3} (0 {le} x {le 1) solid solutions was determined and analyzed by means of Rietveld refinement from X-ray powder diffraction data.
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Structure and Magnetic Properties of Sr2CoWO6: An Ordered Double Perovskite Containing Co2+(HS) with Unquenched Orbital Magnetic Moment

TL;DR: Sr2CoWO6 perovskite has been prepared in polycrystalline form by solid-state reaction at 1150 °C, and the structure contains alternating CoO6 and WO6 octahedra, tilted in anti-phase by 7.24° in the basal ab plane along the [001] direction of the pseudocubic cell as discussed by the authors.
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Correlation of Oxidation States in LaFexNi1-xO3+δ Oxides with Catalytic Activity for H2O2 Decomposition

TL;DR: In this article, all the catalysts were tested in the heterogeneous decomposition of H2O2→H2O+1/2 O2 in alkaline medium and the active sites for the reaction were the highly oxidized transition metals (NiIII and FeIV).
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Neutron Diffraction Study of the Crystal Structure of BaMoO4: A Suitable Precursor for Metallic BaMoO3 Perovskite

TL;DR: In this paper, the crystal structure of BaMoO 4 has been refined from neutron powder diffraction data: space group I 4 1 / a (no. 88), Z =4, a=5.5479(9), and c=12.743(2) A. This observation is coherent with the large thermal stability of this compound against reduction, taking place at temperatures above 920°C in H 2 flow.
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Spin reorientation, magnetization reversal, and negative thermal expansion observed in R F e 0.5 C r 0.5 O 3 perovskites (R =Lu ,Yb ,Tm )

TL;DR: In this article, a study of the magnetic structure vs temperature showed the occurrence of a progressive spin reorientation from the perovskite family to the transition metal sublattice, and in the Tm-based sample, a long-range magnetic order was found.