Search Results - "Rocha, A.K.S."

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  1. 1

    High-temperature (HT) LiCoO2 recycled from spent lithium ion batteries as catalyst for oxygen evolution reaction by Pegoretti, V.C.B., Dixini, P.V.M., Magnago, L., Rocha, A.K.S., Lelis, M.F.F., Freitas, M.B.J.G.

    Published in Materials research bulletin (01-02-2019)
    “…HT LiCoO2 synthesized using the cathodes of LIBs as raw materials as catalyst for OER. [Display omitted] •Thermal synthesis of HT LiCoO2 from Co(OH)2 recycled…”
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    Journal Article
  2. 2

    Copper ferrite synthesis from spent Li-ion batteries for multifunctional application as catalyst in photo Fenton process and as electrochemical pseudocapacitor by Rocha, A.K.S., Magnago, L.B., Santos, J.J., Leal, V.M., Marins, A.A.L., Pegoretti, V.C.B., Ferreira, S.A.D., Lelis, M.F.F., Freitas, M.B.J.G.

    Published in Materials research bulletin (01-05-2019)
    “…Photocatalystic and electrochemical multifunctional properties of CuFe2O4 synthesized using LIBs as raw materials. [Display omitted] •CuFe2O4 was synthesized…”
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    Journal Article
  3. 3

    Copper local structure in spinel ferrites determined by X-ray absorption and Mössbauer spectroscopy and their catalytic performance by Rocha, A.K.S., Magnago, L.B., Pegoretti, V.C.B., de Freitas, M.B.J.G., Lelis, M.F.F., Fabris, J.D., Porto, A.O.

    Published in Materials research bulletin (01-01-2019)
    “…[Display omitted] •Copper spinel ferrites with different copper contents were prepared by a co-precipitation method.•Copper local atomic structures were…”
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    Journal Article
  4. 4

    Sunflower cake in brown-egg laying pullet diets: Effects on the growing phase and on the beginning of production cycle by Souza, D.H., Freitas, E.R., Alencar, A.V.O., Costa, M.K.O., Santos, A.S., Freire, J.F., Rocha, A.K.S., Coelho, R.D., Nepomuceno, R.C.

    Published in Animal feed science and technology (01-11-2020)
    “…•The effect of sunflower cake in the growth phase of laying pullets was evaluated.•Among performance variables feed intake and feed conversion were…”
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  5. 5

    Impact of graphene as 2D interlayer on the growth of GaAs by CSVT on Si (100) and GaAs (100) substrates by Martínez-López, A.L., Cruz-Bueno, J.J., Trejo-Hernández, R., Rocha-Robledo, A.K.S., de-Luna-Bugallo, A., Kudriavtsev, Y., García-Salgado, G., Casallas-Moreno, Y.L., Mendoza-Álvarez, J.G.

    “…GaAs layers were grown using the closed space vapor transport (CSVT) technique on GaAs (100) and Si (100) substrates, with and without Graphene (G) as 2D…”
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