Filtros : "FARIA, ROBERTO MENDONÇA" "Synthetic Metals" Removidos: " GRU020" "TRAVIESO, GONZALO" Limpar

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  • Source: Synthetic Metals. Unidades: IFSC, EESC

    Subjects: CÉLULAS SOLARES, POLÍMEROS (MATERIAIS), FILMES FINOS

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    • ABNT

      CHRISTOPHOLI, Leticia Patricio et al. Reduced graphene oxide and perylene derivative nanohybrid as multifunctional interlayer for organic solar cells. Synthetic Metals, v. No 2020, p. 116552-1-116552-10, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.synthmet.2020.116552. Acesso em: 18 jul. 2024.
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      Christopholi, L. P., Cunha, M. R. P. da, Spada, E. R., Gavim, A. E. X., Hadano, F. S., Silva, W. J. da, et al. (2020). Reduced graphene oxide and perylene derivative nanohybrid as multifunctional interlayer for organic solar cells. Synthetic Metals, No 2020, 116552-1-116552-10. doi:10.1016/j.synthmet.2020.116552
    • NLM

      Christopholi LP, Cunha MRP da, Spada ER, Gavim AEX, Hadano FS, Silva WJ da, Rodrigues PC, Macedo AG, Faria RM, Deus JF de. Reduced graphene oxide and perylene derivative nanohybrid as multifunctional interlayer for organic solar cells [Internet]. Synthetic Metals. 2020 ; No 2020 116552-1-116552-10.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/j.synthmet.2020.116552
    • Vancouver

      Christopholi LP, Cunha MRP da, Spada ER, Gavim AEX, Hadano FS, Silva WJ da, Rodrigues PC, Macedo AG, Faria RM, Deus JF de. Reduced graphene oxide and perylene derivative nanohybrid as multifunctional interlayer for organic solar cells [Internet]. Synthetic Metals. 2020 ; No 2020 116552-1-116552-10.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/j.synthmet.2020.116552
  • Source: Synthetic Metals. Unidade: IFSC

    Subjects: FILMES FINOS, NANOPARTÍCULAS, DISPOSITIVOS ELETRÔNICOS

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      CUNHA, Mariana Richelle P. et al. Differential capacitive response of poly (3-hexylthiophene) diodes and effects of air exposure. Synthetic Metals, v. 253, p. 141-145, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.synthmet.2019.05.012. Acesso em: 18 jul. 2024.
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      Cunha, M. R. P., Maciel, A. C., Faria, R. M., & Cunha, H. N. (2019). Differential capacitive response of poly (3-hexylthiophene) diodes and effects of air exposure. Synthetic Metals, 253, 141-145. doi:10.1016/j.synthmet.2019.05.012
    • NLM

      Cunha MRP, Maciel AC, Faria RM, Cunha HN. Differential capacitive response of poly (3-hexylthiophene) diodes and effects of air exposure [Internet]. Synthetic Metals. 2019 ; 253 141-145.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/j.synthmet.2019.05.012
    • Vancouver

      Cunha MRP, Maciel AC, Faria RM, Cunha HN. Differential capacitive response of poly (3-hexylthiophene) diodes and effects of air exposure [Internet]. Synthetic Metals. 2019 ; 253 141-145.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/j.synthmet.2019.05.012
  • Source: Synthetic Metals. Unidade: IFSC

    Subjects: TRANSISTORES, SOLVENTE, DIELÉTRICOS

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      CARDOSO, Lilian Soares e STEFANELO, Josiani Cristina e FARIA, Roberto Mendonça. Induced characteristics of n- and p-channel OFETs by the choice of solvent for the dielectric layer towards the fabrication of an organic complementary circuit. Synthetic Metals, v. 220, p. 286-291, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.synthmet.2016.06.023. Acesso em: 18 jul. 2024.
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      Cardoso, L. S., Stefanelo, J. C., & Faria, R. M. (2016). Induced characteristics of n- and p-channel OFETs by the choice of solvent for the dielectric layer towards the fabrication of an organic complementary circuit. Synthetic Metals, 220, 286-291. doi:10.1016/j.synthmet.2016.06.023
    • NLM

      Cardoso LS, Stefanelo JC, Faria RM. Induced characteristics of n- and p-channel OFETs by the choice of solvent for the dielectric layer towards the fabrication of an organic complementary circuit [Internet]. Synthetic Metals. 2016 ; 220 286-291.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/j.synthmet.2016.06.023
    • Vancouver

      Cardoso LS, Stefanelo JC, Faria RM. Induced characteristics of n- and p-channel OFETs by the choice of solvent for the dielectric layer towards the fabrication of an organic complementary circuit [Internet]. Synthetic Metals. 2016 ; 220 286-291.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/j.synthmet.2016.06.023
  • Source: Synthetic Metals. Unidade: IFSC

    Subjects: FOTOLUMINESCÊNCIA, ESPECTROMETRIA

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      CRUZ, R. A. et al. Absolute photoluminescence quantum efficiency of P3HT/CHCl3 solution by thermal lens spectrometry. Synthetic Metals, v. 163, n. Ja 2013, p. 38-41, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.synthmet.2012.12.018. Acesso em: 18 jul. 2024.
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      Cruz, R. A., Catunda, T., Facchinatto, W. M., Balogh, D. T., & Faria, R. M. (2013). Absolute photoluminescence quantum efficiency of P3HT/CHCl3 solution by thermal lens spectrometry. Synthetic Metals, 163( Ja 2013), 38-41. doi:10.1016/j.synthmet.2012.12.018
    • NLM

      Cruz RA, Catunda T, Facchinatto WM, Balogh DT, Faria RM. Absolute photoluminescence quantum efficiency of P3HT/CHCl3 solution by thermal lens spectrometry [Internet]. Synthetic Metals. 2013 ; 163( Ja 2013): 38-41.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/j.synthmet.2012.12.018
    • Vancouver

      Cruz RA, Catunda T, Facchinatto WM, Balogh DT, Faria RM. Absolute photoluminescence quantum efficiency of P3HT/CHCl3 solution by thermal lens spectrometry [Internet]. Synthetic Metals. 2013 ; 163( Ja 2013): 38-41.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/j.synthmet.2012.12.018
  • Source: Synthetic Metals. Unidade: IFSC

    Subjects: MATÉRIA CONDENSADA (PROPRIEDADES ELÉTRICAS), POLÍMEROS (QUÍMICA ORGÂNICA)

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      MELLO, S. V. et al. Effect of doping on the fabrication of langmuir and langmuir-blodgett of poly (o-ethoxyaniline). Synthetic Metals, v. 71, p. 2039-2040, 1995Tradução . . Acesso em: 18 jul. 2024.
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      Mello, S. V., Mattoso, L. H. C., Faria, R. M., & Oliveira Junior, O. N. de. (1995). Effect of doping on the fabrication of langmuir and langmuir-blodgett of poly (o-ethoxyaniline). Synthetic Metals, 71, 2039-2040.
    • NLM

      Mello SV, Mattoso LHC, Faria RM, Oliveira Junior ON de. Effect of doping on the fabrication of langmuir and langmuir-blodgett of poly (o-ethoxyaniline). Synthetic Metals. 1995 ; 71 2039-2040.[citado 2024 jul. 18 ]
    • Vancouver

      Mello SV, Mattoso LHC, Faria RM, Oliveira Junior ON de. Effect of doping on the fabrication of langmuir and langmuir-blodgett of poly (o-ethoxyaniline). Synthetic Metals. 1995 ; 71 2039-2040.[citado 2024 jul. 18 ]
  • Source: Synthetic Metals. Unidade: IFSC

    Subjects: FÍSICO-QUÍMICA, ELETROQUÍMICA

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      NOGUEIRA, J S et al. Ac conduction of poly (o-methoxyaniline). Synthetic Metals, v. 69, p. 259-60, 1995Tradução . . Disponível em: https://doi.org/10.1016/0379-6779(94)02440-a. Acesso em: 18 jul. 2024.
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      Nogueira, J. S., Mattoso, L. H. C., Lepienski, C. M., & Faria, R. M. (1995). Ac conduction of poly (o-methoxyaniline). Synthetic Metals, 69, 259-60. doi:10.1016/0379-6779(94)02440-a
    • NLM

      Nogueira JS, Mattoso LHC, Lepienski CM, Faria RM. Ac conduction of poly (o-methoxyaniline) [Internet]. Synthetic Metals. 1995 ; 69 259-60.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/0379-6779(94)02440-a
    • Vancouver

      Nogueira JS, Mattoso LHC, Lepienski CM, Faria RM. Ac conduction of poly (o-methoxyaniline) [Internet]. Synthetic Metals. 1995 ; 69 259-60.[citado 2024 jul. 18 ] Available from: https://doi.org/10.1016/0379-6779(94)02440-a

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