Listar Conacyt por autor "CABRAL PRIETO, AGUSTIN"

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  • OLEA MEJIA, OSCAR FERNANDO; BARRERA DIAZ, CARLOS EDUARDO; Fernández Mondragón, Mariana; CABRAL PRIETO, AGUSTIN (International Journal of Photoenergy, 2017-03-28)
    We have synthesized, in this work, zero valent iron (ZVI) nanoparticles to improve the efficiency of degradation of phenolphthalein catalyzed by ozone in aqueous solution. The Fe nanoparticles were obtained using the pulsed ...
  • CABRAL PRIETO, AGUSTIN; Lopez Callejas, Lidio; RODRIGUEZ MENDEZ, CIRILO; ALMAZAN CELIS, JONATHAN; OLEA MEJIA, OSCAR FERNANDO; PEÑA EGUILUZ, ROSENDO; VALENCIA ALVARADO, RAUL; MERCADO CABRERA, ANTONIO; MUÑOZ CASTRO, ARNABETH; GARCIA SANTIBAÑEZ SAUCEDO, HECTOR FERNANDO (Springer, 2017-02-27)
    The survival of Escherichia coli bacteria and mouse glioma cells were studied under different temperatures using direct heating in water, ultrasound, and magnetic fluid hyperthermia. The survival of these microorganisms ...
  • OLEA MEJIA, OSCAR FERNANDO; OLEA CARDOSO, OSCAR; LOPEZ CASTAÑARES, RAFAEL; Salcedo Castillo, Uriel; CABRAL PRIETO, AGUSTIN; LOPEZ TELLEZ, GUSTAVO (Elsevier, 2017-07-15)
    In this work we used the Pulsed Plasma in Liquid technique to synthesize zero-valent iron nanostructures. We used a DC Power Source to produce such plasma on water and methanol. The obtained particles were characterized ...
  • CABRAL PRIETO, AGUSTIN; CONTRERAS VITE, JUAN ANTONIO; GARCIA SOSA, IRMA MARIA ENGRACIA; NAVA PERALTA, NOEL; GARCIA SANTIBAÑEZ SANCHEZ, FEDERICO GABRIEL (Sociedad Química de México, 2010)
    The Vickers micro-hardness of this alloy was unusually dependent on the heat treatment from 300 to 634K, inferring important micro-structural changes and the presence of amorphous grains before its phase transition. Once ...
  • ALMAZAN CELIS, JONATHAN; OLEA MEJIA, OSCAR FERNANDO; CABRAL PRIETO, AGUSTIN; GARCIA SOSA, IRMA MARIA ENGRACIA; DERAT, RAUL; Baggio Saitovitch, Elisa; Alzamora Camarena, Mariella (Springer, 2017-02-27)
    Nanometric magnetite (nm-Fe3O4) particles were prepared by the reverse co-precipitation synthesis method, obtaining particle sizes that ranged from 4 to 8.5 nm. In their synthesis, the concentration of iron salts of ferric ...

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