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Luiz Tadeu Fernandes Eleno

Luiz Tadeu Fernandes Eleno

:email: luizeleno@usp.br
:telephone_receiver: +55 12 3159 9810
:earth_americas: https://sites.usp.br/computeel

Áreas de pesquisa: Cálculos ab initio de estrutura eletrônica, Termodinâmica Computacional, Cálculo de Diagramas de Fases (CALPHAD), Física do Estado Sólido Computacional.

Info:
2014–presente
Professor Doutor na EEL-USP
2012–2014
Pós Doutorado em Física
Instituto de Física da Universidade de São Paulo (IF-USP), São Paulo, Brasil
2012
Doutorado em Ciência e Engenharia de Materiais
Escola Politécnica da Universidade de São Paulo, São Paulo, Brasil
2008
Pesquisador no Centre Interuniversitaire de Recherche et d’Ingénierie des Matériaux (CIRIMAT), Université de Toulouse, França
2003–2008
Pesquisador no Max-Planck-Institut für Eisenforschung (MPIE), Düsseldorf, Alemanha
2003
Mestrado em Engenharia de Materiais
Escola Politécnica da Universidade de São Paulo, São Paulo, Brasil
2001
Graduação em Engenharia Metalúrgica
Escola Politécnica da Universidade de São Paulo, São Paulo, Brasil

Publicações Recentes

2022

  1. Correa, L.E., Ferreira, P.P., de Faria, L.R., Dorini, T.T., da Luz, M.S., Fisk, Z., Torikachvili, M.S., Eleno, L.T.F., & Machado, A.J.S. (2022) Evidence for multiband superconductivity and charge density waves in Ni-doped ZrTe2. Journal of Alloys and Compounds, 907, 164477.

    DOI: 10.1016/j.jallcom.2022.164477

  2. Bhattacharyya, A., Lees, M.R., Panda, K., Ferreira, P.P., Dorini, T.T., Gaudry, E., Eleno, L.T.F., Anand, V.K., Sannigrahi, J., Biswas, P.K., Tripathi, R., & Adroja, D.T. (2022) Nodeless time-reversal symmetry breaking in the centrosymmetric superconductor \lessmml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"\greater\lessmml:mrow\greater\lessmml:msub\greater\lessmml:mi\greaterSc\less/mml:mi\greater\lessmml:mn\greater5\less/mml:mn\greater\less/mml:msub\greater\lessmml:msub\greater\lessmml:mi\greaterCo\less/mml:mi\greater\lessmml:mn\greater4\less/mml:mn\greater\less/mml:msub\greater\lessmml:msub\greater\lessmml:mi\greaterSi\less/mml:mi\greater\lessmml:mn\greater10\less/mml:mn\greater\less/mml:msub\greater\less/mml:mrow\greater\less/mml:math\greater probed by muon-spin spectroscopy. Physical Review Materials, 6.

    DOI: 10.1103/physrevmaterials.6.064802

2021

  1. dos Santos, J.C.P., da Silva, A.A.A.P., Ferreira, P.P., Dorini, T.T., de Barros, D.F., de Abreu, D.A., Eleno, L.T.F., Nunes, C.A., & Coelho, G.C. (2021) Thermodynamic modeling of the Al–Nb–V system. Calphad, 74, 102321.

    DOI: 10.1016/j.calphad.2021.102321

  2. Silva, A.A.A.P., Lamoglia, M.S., Silva, G., Fiorani, J.-M., David, N., Vilasi, M., Coelho, G.C., Nunes, C.A., & Eleno, L.T.F. (2021) Heat capacity measurements of the Fe2Nb and Fe7Nb6 intermetallic compounds. Journal of Alloys and Compounds, 878, 160411.

    DOI: 10.1016/j.jallcom.2021.160411

  3. Ferreira, P.P., Manesco, A.L.R., Dorini, T.T., Correa, L.E., Weber, G., Machado, A.J.S., & Eleno, L.T.F. (2021) Strain engineering the topological type-II Dirac semimetal \lessmml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"\greater\lessmml:msub\greater\lessmml:mrow\greater\lessmml:mi\greaterNiTe\less/mml:mi\greater\less/mml:mrow\greater\lessmml:mn\greater2\less/mml:mn\greater\less/mml:msub\greater\less/mml:math\greater. Physical Review B, 103.

    DOI: 10.1103/physrevb.103.125134

  4. Faria, L.R.D., Ferreira, P.P., Correa, L.E., Eleno, L.T.F., Torikachvili, M.S., & Machado, A.J.S. (2021) Possible multiband superconductivity in the quaternary carbide YRe\lesssub\greater2\less/sub\greaterSiC. Superconductor Science and Technology, 34, 065010.

    DOI: 10.1088/1361-6668/abf7cf

  5. Dorini, T.T., de Freitas, B.X., Ferreira, P.P., Chaia, N., Suzuki, P.A., Joubert, J.-M., Nunes, C.A., Coelho, G.C., & Eleno, L.T.F. (2021) T2 phase site occupancies in the Cr–Si–B system: a combined synchroton-XRD/first-principles study. Scripta Materialia, 199, 113854.

    DOI: 10.1016/j.scriptamat.2021.113854

  6. Bhattacharyya, A., Ferreira, P.P., Panda, K., Masunaga, S.H., de Faria, L.R., Correa, L.E., Santos, F.B., Adroja, D.T., Yokoyama, K., Dorini, T.T., Jardim, R.F., Eleno, L.T.F., & Machado, A.J.S. (2021) Electron–phonon superconductivity in C-doped topological nodal-line semimetal Zr\lesssub\greater5\less/sub\greaterPt\lesssub\greater3\less/sub\greater: a muon spin rotation and relaxation (\upmuSR) study. Journal of Physics: Condensed Matter, 34, 035602.

    DOI: 10.1088/1361-648x/ac2bc7

2020

  1. dos Santos Vinı́cius O., Eleno, L.T.F., Schön, C.G., & Richter, K.W. (2020) Experimental investigation of phase equilibria in the Nb–Ni–Si refractory alloy system at 1323 K. Journal of Alloys and Compounds, 842, 155373.

    DOI: 10.1016/j.jallcom.2020.155373

  2. Bhattacharyya, A., Ferreira, P.P., Santos, F.B., Adroja, D.T., Lord, J.S., Correa, L.E., Machado, A.J.S., Manesco, A.L.R., & Eleno, L.T.F. (2020) Two-band superconductivity with unconventional pairing symmetry in \lessmml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"\greater\lessmml:mrow\greater\lessmml:msub\greater\lessmml:mi\greaterHfV\less/mml:mi\greater\lessmml:mn\greater2\less/mml:mn\greater\less/mml:msub\greater\lessmml:msub\greater\lessmml:mi\greaterGa\less/mml:mi\greater\lessmml:mn\greater4\less/mml:mn\greater\less/mml:msub\greater\less/mml:mrow\greater\less/mml:math\greater. Physical Review Research, 2.

    DOI: 10.1103/physrevresearch.2.022001

2019

  1. dos Santos Vinı́cius O., Tunes, M.A., Eleno, L.T.F., Schön, C.G., & Richter, K.W. (2019) Experimental investigation of phase equilibria in the Nb–Ni–Si refractory alloy system at 1073 K. Scripta Materialia, 164, 96–100.

    DOI: 10.1016/j.scriptamat.2019.01.026

  2. de Freitas, B.X., Dorini, T.T., Coelho, G.C., Nunes, C.A., & Eleno, L.T.F. (2019) Thermodynamic assessment of the RE–Zn (RE = Dy, Er, Ho, Tb) binaries as a starting step for a Mg–Zn–Zr–Rare earth multicomponent database. Calphad, 67, 101676.

    DOI: 10.1016/j.calphad.2019.101676

  3. Dorini, T.T. & Eleno, L.T.F. (2019) Liquid Bi–Pb and Bi–Li alloys: Mining thermodynamic properties from ab-initio molecular dynamics calculations using thermodynamic models. Calphad, 67, 101687.

    DOI: 10.1016/j.calphad.2019.101687

Docentes