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C.A. Cortés-Escobedo

Researcher at Instituto Politécnico Nacional

Publications -  41
Citations -  634

C.A. Cortés-Escobedo is an academic researcher from Instituto Politécnico Nacional. The author has contributed to research in topics: Rietveld refinement & Crystal structure. The author has an hindex of 15, co-authored 35 publications receiving 471 citations.

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Mechanosynthesis, crystal structure and magnetic characterization of M-type SrFe12O19

TL;DR: In this paper, the influence of milling parameters, hematite excess and annealing temperature on magnetic properties of strontium hexaferrite was investigated, and it was found that mechanical milling followed by an annaling treatment at low temperature (700-°C) promotes the complete structural transformation to Sr-hexaferrite phase.
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Structural transitions and multiferroic properties of high Ni-doped BiFeO 3

TL;DR: A detailed study about the substitution of Fe3+ by Ni2+ on the crystal structure and multiferroic properties is presented in this paper, where X-ray diffraction patterns reveal the formation of rhombohedral structure with small amounts of Bi2Fe4O9 as a secondary phase for x
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Large magnetocaloric effect near to room temperature in Sr doped La0.7Ca0.3MnO3

TL;DR: In this paper, a detailed study of crystal structure, magnetic behavior and magnetocaloric effect of La0.7Ca0.3−xSrxMnO3 powders, synthesized by assisted high-energy ball milling, is presented.
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Enhanced Multiferroic Properties of YFeO3 by Doping with Bi3

TL;DR: The substitution of Bi3+ in Y3+ sites promoted a distortion into the orthorhombic structure and modified Fe-O-Fe angles and octahedral tilt, which promoted a ferromagnetic (FM) order, which was attributed to both the crystal distortion and Dzyaloshinskii-Moriya interaction.
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Mechanically assisted synthesis of multiferroic BiFeO3: Effect of synthesis parameters

TL;DR: In this paper, the influence of synthesis parameters on the crystal structure and the electronic and magnetic behavior of multiferroic bismuth ferrites, BiFeO 3, synthesized by high-energy ball milling followed by annealing at low temperatures.