F
Fernando Daniel Prado
Researcher at Universidad Nacional del Sur
Publications - 99
Citations - 2943
Fernando Daniel Prado is an academic researcher from Universidad Nacional del Sur. The author has contributed to research in topics: Perovskite (structure) & Oxide. The author has an hindex of 28, co-authored 96 publications receiving 2753 citations. Previous affiliations of Fernando Daniel Prado include University of Texas at Austin & Balseiro Institute.
Papers
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Journal ArticleDOI
Magnetic ordering effects in the Raman spectra of La 1 − x Mn 1 − x O 3
Eduardo Granado,A Garcı́a,J. A. Sanjurjo,C. Rettori,Iris L. Torriani,Fernando Daniel Prado,Rodolfo Sánchez,Alberto Caneiro,S. B. Oseroff +8 more
TL;DR: In this paper, temperature-dependent Raman spectra of polycrystalline polycrystaline samples were correlated to their structural and magnetic properties for different ϵ-values, and a quantitative analysis of this effect was presented.
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High-temperature spin dynamics in CMR manganites: ESR and magnetization
M.T. Causa,M. Tovar,Alberto Caneiro,Fernando Daniel Prado,G. Ibanez,C.A. Ramos,Alejandro Butera,B. Alascio,Xavier Obradors,S. Piñol,Francisco Rivadulla,Carlos Vázquez-Vázquez,M. A. López-Quintela,José Rivas,Yasuhiro Tokura,S. B. Oseroff +15 more
TL;DR: In this paper, the electron spin resonance (ESR) and dc susceptibility measurements in Mn perovskites up to 1000 K were performed and a single relaxation mechanism related to spin-only interactions was proposed.
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Soft Chemistry Synthesis and Characterization of Layered Li1-xNi1-yCoyO2-δ (0 ≤ x ≤ 1 and 0 ≤ y ≤ 1)
TL;DR: Li1-xNi1-yCoyO2-δ oxides have been synthesized for 0 ≤ x ≤ 1 and 0 ≤ y ≤ 1 by chemically extracting lithium at ambient temperature from LiNiNiO2 with an oxidizing agent NO2PF6 in acetonitrile medium.
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EPR linewidths in La 1-x Ca x MnO 3 : 0<=x<=1
D. L. Huber,G. Alejandro,Alberto Caneiro,M.T. Causa,Fernando Daniel Prado,M. Tovar,S. B. Oseroff +6 more
TL;DR: In this article, the electron paramagnetic resonance linewidth was analyzed in the case of a single ion anisotropy and antisymmetric (Dzialozhinsky-Moriya) exchange with isotropic superexchange.
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Comparison of the chemical stability of the high energy density cathodes of lithium-ion batteries
TL;DR: In this paper, the variations of oxygen content with lithium content (1− x ) in chemically delithiated Li 1− x CoO 2, Li 1 − x Ni 0.85 Co 0.15 O 2, and Li 1+ x Mn 2 O 4 cathodes have been monitored with redox titrations.