Filtros : "Indexado no Current Contents" "IQSC" Removidos: "Espanha" "Santos, Regina Helena de Almeida" "ITO, AMANDO SIUITI" "Estados Unidos" "FMRP" Limpar

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  • Source: Catalysis Today. Unidade: IQSC

    Subjects: ELETROCATÁLISE, PLATINA

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      CALDERON-CÁRDENAS, Alfredo et al. Modeling the triple-path electro-oxidation of formic acid on platinum: Cyclic voltammetry and oscillations. Catalysis Today, v. 359, p. 90-98, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.cattod.2019.04.054. Acesso em: 27 set. 2024.
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      Calderon-Cárdenas, A., Hartl, F. W., Gallas, J. A. C., & Varela, H. (2021). Modeling the triple-path electro-oxidation of formic acid on platinum: Cyclic voltammetry and oscillations. Catalysis Today, 359, 90-98. doi:10.1016/j.cattod.2019.04.054
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      Calderon-Cárdenas A, Hartl FW, Gallas JAC, Varela H. Modeling the triple-path electro-oxidation of formic acid on platinum: Cyclic voltammetry and oscillations [Internet]. Catalysis Today. 2021 ; 359 90-98.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.cattod.2019.04.054
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      Calderon-Cárdenas A, Hartl FW, Gallas JAC, Varela H. Modeling the triple-path electro-oxidation of formic acid on platinum: Cyclic voltammetry and oscillations [Internet]. Catalysis Today. 2021 ; 359 90-98.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.cattod.2019.04.054
  • Source: Molecular Catalysis. Unidade: IQSC

    Subjects: QUÍMICA VERDE, LIPASE

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      LIMA, Rafaely Nascimento et al. Versatility of Candida antarctica lipase in the amide bond formation applied in organic synthesis and biotechnological processes. Molecular Catalysis, v. 466, n. Ja2019, p. 75-105, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.mcat.2019.01.007. Acesso em: 27 set. 2024.
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      Lima, R. N., Anjos, C. S. dos, Orozco, E. V. M., & Porto, A. L. M. (2019). Versatility of Candida antarctica lipase in the amide bond formation applied in organic synthesis and biotechnological processes. Molecular Catalysis, 466( Ja2019), 75-105. doi:10.1016/j.mcat.2019.01.007
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      Lima RN, Anjos CS dos, Orozco EVM, Porto ALM. Versatility of Candida antarctica lipase in the amide bond formation applied in organic synthesis and biotechnological processes [Internet]. Molecular Catalysis. 2019 ; 466( Ja2019): 75-105.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.mcat.2019.01.007
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      Lima RN, Anjos CS dos, Orozco EVM, Porto ALM. Versatility of Candida antarctica lipase in the amide bond formation applied in organic synthesis and biotechnological processes [Internet]. Molecular Catalysis. 2019 ; 466( Ja2019): 75-105.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.mcat.2019.01.007
  • Source: Food Chemistry. Unidade: IQSC

    Assunto: TERMOGRAVIMETRIA

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      DE JESUS, Jany Hellen Ferreira e FERREIRA, Ana Paula Garcia e CAVALHEIRO, Eder Tadeu Gomes. Thermal behavior of inosine 5′-monophosphate in acidic form and as alkali and alkaline earth salts. Food Chemistry, v. 258, p. 199-205, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.foodchem.2018.03.063. Acesso em: 27 set. 2024.
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      De Jesus, J. H. F., Ferreira, A. P. G., & Cavalheiro, E. T. G. (2018). Thermal behavior of inosine 5′-monophosphate in acidic form and as alkali and alkaline earth salts. Food Chemistry, 258, 199-205. doi:10.1016/j.foodchem.2018.03.063
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      De Jesus JHF, Ferreira APG, Cavalheiro ETG. Thermal behavior of inosine 5′-monophosphate in acidic form and as alkali and alkaline earth salts [Internet]. Food Chemistry. 2018 ; 258 199-205.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.foodchem.2018.03.063
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      De Jesus JHF, Ferreira APG, Cavalheiro ETG. Thermal behavior of inosine 5′-monophosphate in acidic form and as alkali and alkaline earth salts [Internet]. Food Chemistry. 2018 ; 258 199-205.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.foodchem.2018.03.063
  • Source: Nano Energy. Unidade: IQSC

    Assunto: ELETROCATÁLISE

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      KHALID, Mohd et al. Multifunctional electrocatalysts derived from conducting polymer and metal organic framework complexes. Nano Energy, v. 45, p. 127-135, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.nanoen.2017.12.045. Acesso em: 27 set. 2024.
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      Khalid, M., Honorato, A. das G. de O., Varela, H., & Dai, L. (2018). Multifunctional electrocatalysts derived from conducting polymer and metal organic framework complexes. Nano Energy, 45, 127-135. doi:10.1016/j.nanoen.2017.12.045
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      Khalid M, Honorato A das G de O, Varela H, Dai L. Multifunctional electrocatalysts derived from conducting polymer and metal organic framework complexes [Internet]. Nano Energy. 2018 ; 45 127-135.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.nanoen.2017.12.045
    • Vancouver

      Khalid M, Honorato A das G de O, Varela H, Dai L. Multifunctional electrocatalysts derived from conducting polymer and metal organic framework complexes [Internet]. Nano Energy. 2018 ; 45 127-135.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.nanoen.2017.12.045
  • Source: Molecular Catalysis. Unidades: IQSC, EP

    Subjects: CATÁLISE, CATALISADORES

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      MARCOS, Francielle Candian Firmino e ASSAF, Jose Mansur e ASSAF, Elisabete Moreira. CuFe and CuCo supported on pillared clay as catalysts for CO2 hydrogenation into value-added products in one-step. Molecular Catalysis, v. 458, p. 297-306, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.mcat.2017.12.025. Acesso em: 27 set. 2024.
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      Marcos, F. C. F., Assaf, J. M., & Assaf, E. M. (2018). CuFe and CuCo supported on pillared clay as catalysts for CO2 hydrogenation into value-added products in one-step. Molecular Catalysis, 458, 297-306. doi:10.1016/j.mcat.2017.12.025
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      Marcos FCF, Assaf JM, Assaf EM. CuFe and CuCo supported on pillared clay as catalysts for CO2 hydrogenation into value-added products in one-step [Internet]. Molecular Catalysis. 2018 ; 458 297-306.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.mcat.2017.12.025
    • Vancouver

      Marcos FCF, Assaf JM, Assaf EM. CuFe and CuCo supported on pillared clay as catalysts for CO2 hydrogenation into value-added products in one-step [Internet]. Molecular Catalysis. 2018 ; 458 297-306.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.mcat.2017.12.025
  • Source: Scientific Reports. Unidade: IQSC

    Subjects: NANOTECNOLOGIA, CÉLULAS

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      URBACZEK, Ana Carolina et al. Endothelial cell culture under perfusion on A Polyester-toner microfluidic device. Scientific Reports, 2017Tradução . . Disponível em: https://doi.org/10.1038/s41598-017-11043-0. Acesso em: 27 set. 2024.
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      Urbaczek, A. C., Gomes Carneiro Leão, P. A., Souza, F. Z. R. de, Afonso, A., Alberice, J. V., Cappelini, L. T., et al. (2017). Endothelial cell culture under perfusion on A Polyester-toner microfluidic device. Scientific Reports. doi:10.1038/s41598-017-11043-0
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      Urbaczek AC, Gomes Carneiro Leão PA, Souza FZR de, Afonso A, Alberice JV, Cappelini LT, Carlos IZ, Carrilho E. Endothelial cell culture under perfusion on A Polyester-toner microfluidic device [Internet]. Scientific Reports. 2017 ;[citado 2024 set. 27 ] Available from: https://doi.org/10.1038/s41598-017-11043-0
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      Urbaczek AC, Gomes Carneiro Leão PA, Souza FZR de, Afonso A, Alberice JV, Cappelini LT, Carlos IZ, Carrilho E. Endothelial cell culture under perfusion on A Polyester-toner microfluidic device [Internet]. Scientific Reports. 2017 ;[citado 2024 set. 27 ] Available from: https://doi.org/10.1038/s41598-017-11043-0
  • Source: Electrochimica Acta. Unidade: IQSC

    Subjects: CORROSÃO, ELETROQUÍMICA

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      BANDEIRA, Rafael Marinho et al. Influence of the thickness and roughness of polyaniline coatings on corrosion protection of AA7075 aluminium alloy. Electrochimica Acta, v. 240, p. 215-224, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.electacta.2017.04.083. Acesso em: 27 set. 2024.
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      Bandeira, R. M., Drunen, J. V., Garcia, A. C., & Tremiliosi Filho, G. (2017). Influence of the thickness and roughness of polyaniline coatings on corrosion protection of AA7075 aluminium alloy. Electrochimica Acta, 240, 215-224. doi:10.1016/j.electacta.2017.04.083
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      Bandeira RM, Drunen JV, Garcia AC, Tremiliosi Filho G. Influence of the thickness and roughness of polyaniline coatings on corrosion protection of AA7075 aluminium alloy [Internet]. Electrochimica Acta. 2017 ; 240 215-224.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.electacta.2017.04.083
    • Vancouver

      Bandeira RM, Drunen JV, Garcia AC, Tremiliosi Filho G. Influence of the thickness and roughness of polyaniline coatings on corrosion protection of AA7075 aluminium alloy [Internet]. Electrochimica Acta. 2017 ; 240 215-224.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.electacta.2017.04.083
  • Source: ChemElectrochem. Unidade: IQSC

    Subjects: ELETROQUÍMICA, ELETROCATÁLISE

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      GARCIA, Amanda Cristina et al. Unexpected Activity for Glycerol Electro-oxidation of Nanostructured Pd Pt and Pd Pt Ru Catalysts. ChemElectrochem, v. 4, n. 6, p. 1314-1319, 2017Tradução . . Disponível em: https://doi.org/10.1002/celc.201600742. Acesso em: 27 set. 2024.
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      Garcia, A. C., Morais, C., Napporn, T. W., Kokoh, K. B., & Tremiliosi Filho, G. (2017). Unexpected Activity for Glycerol Electro-oxidation of Nanostructured Pd Pt and Pd Pt Ru Catalysts. ChemElectrochem, 4( 6), 1314-1319. doi:10.1002/celc.201600742
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      Garcia AC, Morais C, Napporn TW, Kokoh KB, Tremiliosi Filho G. Unexpected Activity for Glycerol Electro-oxidation of Nanostructured Pd Pt and Pd Pt Ru Catalysts [Internet]. ChemElectrochem. 2017 ; 4( 6): 1314-1319.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.201600742
    • Vancouver

      Garcia AC, Morais C, Napporn TW, Kokoh KB, Tremiliosi Filho G. Unexpected Activity for Glycerol Electro-oxidation of Nanostructured Pd Pt and Pd Pt Ru Catalysts [Internet]. ChemElectrochem. 2017 ; 4( 6): 1314-1319.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.201600742
  • Source: Catalysis Today. Unidade: IQSC

    Subjects: CATÁLISE, NÍQUEL

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      SUFFREDINI, Daiane F. P. et al. Renewable hydrogen from glycerol reforming over nickel aluminate-based catalysts. Catalysis Today, v. 289, p. 96-104, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.cattod.2016.07.027. Acesso em: 27 set. 2024.
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      Suffredini, D. F. P., Thyssen, V. V., Almeida, P. M. M. de, Gomes, R. S., Borges, M. C., Farias, A. M. D. de, et al. (2017). Renewable hydrogen from glycerol reforming over nickel aluminate-based catalysts. Catalysis Today, 289, 96-104. doi:10.1016/j.cattod.2016.07.027
    • NLM

      Suffredini DFP, Thyssen VV, Almeida PMM de, Gomes RS, Borges MC, Farias AMD de, Assaf EM, Fraga MA, Brandao ST. Renewable hydrogen from glycerol reforming over nickel aluminate-based catalysts [Internet]. Catalysis Today. 2017 ; 289 96-104.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.cattod.2016.07.027
    • Vancouver

      Suffredini DFP, Thyssen VV, Almeida PMM de, Gomes RS, Borges MC, Farias AMD de, Assaf EM, Fraga MA, Brandao ST. Renewable hydrogen from glycerol reforming over nickel aluminate-based catalysts [Internet]. Catalysis Today. 2017 ; 289 96-104.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.cattod.2016.07.027
  • Source: ChemElectroChem. Unidade: IQSC

    Assunto: ELETRODEPOSIÇÃO

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      PAN, Changwei et al. Periodic Transition between Breathing Spots and Synchronous Sulfur Deposition/Dissolution in Transpassive Region of the Electro-Oxidation of Sulfide on Platinum. ChemElectroChem, v. 4, n. 8, p. 2075-2078, 2017Tradução . . Disponível em: https://doi.org/10.1002/celc.201700279. Acesso em: 27 set. 2024.
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      Pan, C., Cheng, R., Birzu, A., Yang, J., Ren, L., Varela, H., & Gao, Q. (2017). Periodic Transition between Breathing Spots and Synchronous Sulfur Deposition/Dissolution in Transpassive Region of the Electro-Oxidation of Sulfide on Platinum. ChemElectroChem, 4( 8), 2075-2078. doi:10.1002/celc.201700279
    • NLM

      Pan C, Cheng R, Birzu A, Yang J, Ren L, Varela H, Gao Q. Periodic Transition between Breathing Spots and Synchronous Sulfur Deposition/Dissolution in Transpassive Region of the Electro-Oxidation of Sulfide on Platinum [Internet]. ChemElectroChem. 2017 ; 4( 8): 2075-2078.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.201700279
    • Vancouver

      Pan C, Cheng R, Birzu A, Yang J, Ren L, Varela H, Gao Q. Periodic Transition between Breathing Spots and Synchronous Sulfur Deposition/Dissolution in Transpassive Region of the Electro-Oxidation of Sulfide on Platinum [Internet]. ChemElectroChem. 2017 ; 4( 8): 2075-2078.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.201700279
  • Source: ChemElectroChem. Unidade: IQSC

    Subjects: ELETROQUÍMICA, ZIRCÔNIA

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      CARNEIRO, Jussara Fernandes et al. Zirconia on reduced graphene oxide sheets: synergistic catalysts with high selectivity for H2O2 electrogeneration. ChemElectroChem, v. 4, p. 508–513, 2017Tradução . . Disponível em: https://doi.org/10.1002/celc.201600760. Acesso em: 27 set. 2024.
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      Carneiro, J. F., Paulo, M. J., Mohamed, S., Tavares, A. C., & Lanza, M. R. de V. (2017). Zirconia on reduced graphene oxide sheets: synergistic catalysts with high selectivity for H2O2 electrogeneration. ChemElectroChem, 4, 508–513. doi:10.1002/celc.201600760
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      Carneiro JF, Paulo MJ, Mohamed S, Tavares AC, Lanza MR de V. Zirconia on reduced graphene oxide sheets: synergistic catalysts with high selectivity for H2O2 electrogeneration [Internet]. ChemElectroChem. 2017 ; 4 508–513.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.201600760
    • Vancouver

      Carneiro JF, Paulo MJ, Mohamed S, Tavares AC, Lanza MR de V. Zirconia on reduced graphene oxide sheets: synergistic catalysts with high selectivity for H2O2 electrogeneration [Internet]. ChemElectroChem. 2017 ; 4 508–513.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.201600760
  • Source: Catalysis Today. Unidade: IQSC

    Subjects: HIDRÓLISE, BIOGÁS

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      LINO, Ananda Vallezi Paladino e ASSAF, Elisabete Moreira e ASSAF, Jose Mansur. Hydrotalcites derived catalysts for syngas production from biogas reforming: Effect of nickel and cerium load. Catalysis Today, v. 289, p. 78-88, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.cattod.2016.08.022. Acesso em: 27 set. 2024.
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      Lino, A. V. P., Assaf, E. M., & Assaf, J. M. (2017). Hydrotalcites derived catalysts for syngas production from biogas reforming: Effect of nickel and cerium load. Catalysis Today, 289, 78-88. doi:10.1016/j.cattod.2016.08.022
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      Lino AVP, Assaf EM, Assaf JM. Hydrotalcites derived catalysts for syngas production from biogas reforming: Effect of nickel and cerium load [Internet]. Catalysis Today. 2017 ; 289 78-88.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.cattod.2016.08.022
    • Vancouver

      Lino AVP, Assaf EM, Assaf JM. Hydrotalcites derived catalysts for syngas production from biogas reforming: Effect of nickel and cerium load [Internet]. Catalysis Today. 2017 ; 289 78-88.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.cattod.2016.08.022
  • Source: ChemElectrChem. Unidade: IQSC

    Assunto: ELETROQUÍMICA

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      GARCIA, Amanda Cristina et al. Promotional effect of Ag on the catalytic activity of Au for glycerol electrooxidation in alkaline medium. ChemElectrChem, v. 2, n. 7, p. 1036-1041, 2015Tradução . . Disponível em: https://doi.org/10.1002/celc.201500022. Acesso em: 27 set. 2024.
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      Garcia, A. C., Caliman, J., Ferreira, E. B., Tremiliosi Filho, G., & Linares, J. J. (2015). Promotional effect of Ag on the catalytic activity of Au for glycerol electrooxidation in alkaline medium. ChemElectrChem, 2( 7), 1036-1041. doi:10.1002/celc.201500022
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      Garcia AC, Caliman J, Ferreira EB, Tremiliosi Filho G, Linares JJ. Promotional effect of Ag on the catalytic activity of Au for glycerol electrooxidation in alkaline medium [Internet]. ChemElectrChem. 2015 ; 2( 7): 1036-1041.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.201500022
    • Vancouver

      Garcia AC, Caliman J, Ferreira EB, Tremiliosi Filho G, Linares JJ. Promotional effect of Ag on the catalytic activity of Au for glycerol electrooxidation in alkaline medium [Internet]. ChemElectrChem. 2015 ; 2( 7): 1036-1041.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.201500022
  • Source: International Journal of Hydrogen Energy. Unidade: IQSC

    Assunto: ETANOL

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      SATO, André Gustavo et al. Potential applications of the hydrogen and the high energy biofuel blend produced by ethanol dehydrogenation on a Cu/ZrO2 catalyst. International Journal of Hydrogen Energy, v. 40, n. 42, p. 14716-14722, 2015Tradução . . Disponível em: https://doi.org/10.1016/j.ijhydene.2015.05.071. Acesso em: 27 set. 2024.
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      Sato, A. G., Biancolli, A. L. G., Paganin, V. A., Silva, G. C. da, Cruz, G., Santos, A. M. dos, & Ticianelli, E. A. (2015). Potential applications of the hydrogen and the high energy biofuel blend produced by ethanol dehydrogenation on a Cu/ZrO2 catalyst. International Journal of Hydrogen Energy, 40( 42), 14716-14722. doi:10.1016/j.ijhydene.2015.05.071
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      Sato AG, Biancolli ALG, Paganin VA, Silva GC da, Cruz G, Santos AM dos, Ticianelli EA. Potential applications of the hydrogen and the high energy biofuel blend produced by ethanol dehydrogenation on a Cu/ZrO2 catalyst [Internet]. International Journal of Hydrogen Energy. 2015 ; 40( 42): 14716-14722.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.ijhydene.2015.05.071
    • Vancouver

      Sato AG, Biancolli ALG, Paganin VA, Silva GC da, Cruz G, Santos AM dos, Ticianelli EA. Potential applications of the hydrogen and the high energy biofuel blend produced by ethanol dehydrogenation on a Cu/ZrO2 catalyst [Internet]. International Journal of Hydrogen Energy. 2015 ; 40( 42): 14716-14722.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.ijhydene.2015.05.071
  • Source: ChemElectroChem. Unidade: IQSC

    Assunto: NANOPARTÍCULAS

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      MARTINS, Pedro Farinazzo Bergamo Dias e TICIANELLI, Edson Antonio. Electrocatalytic activity and stability of platinum nanoparticles supported on carbon-molybdenum oxides for the oxygen reduction reaction. ChemElectroChem, v. 2, n. 9, p. 1298-1306, 2015Tradução . . Disponível em: https://doi.org/10.1002/celc.v.2.9/issuetoc. Acesso em: 27 set. 2024.
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      Martins, P. F. B. D., & Ticianelli, E. A. (2015). Electrocatalytic activity and stability of platinum nanoparticles supported on carbon-molybdenum oxides for the oxygen reduction reaction. ChemElectroChem, 2( 9), 1298-1306. doi:10.1002/celc.v.2.9/issuetoc
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      Martins PFBD, Ticianelli EA. Electrocatalytic activity and stability of platinum nanoparticles supported on carbon-molybdenum oxides for the oxygen reduction reaction [Internet]. ChemElectroChem. 2015 ; 2( 9): 1298-1306.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.v.2.9/issuetoc
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      Martins PFBD, Ticianelli EA. Electrocatalytic activity and stability of platinum nanoparticles supported on carbon-molybdenum oxides for the oxygen reduction reaction [Internet]. ChemElectroChem. 2015 ; 2( 9): 1298-1306.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/celc.v.2.9/issuetoc
  • Source: Current Organic Synthesis. Unidade: IQSC

    Assunto: SÍNTESE ORGÂNICA

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      BURTOLOSO, Antonio Carlos Bender et al. Advances in the enantioselective metal-catalyzed N-H and O-H insertion reactions with diazocarbonyl compounds. Current Organic Synthesis, v. 12, n. 5, p. 650-659, 2015Tradução . . Disponível em: https://doi.org/10.2174/157017941205150821153658. Acesso em: 27 set. 2024.
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      Burtoloso, A. C. B., Santiago, J. V., Bernardim, B., & Talero, A. G. (2015). Advances in the enantioselective metal-catalyzed N-H and O-H insertion reactions with diazocarbonyl compounds. Current Organic Synthesis, 12( 5), 650-659. doi:10.2174/157017941205150821153658
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      Burtoloso ACB, Santiago JV, Bernardim B, Talero AG. Advances in the enantioselective metal-catalyzed N-H and O-H insertion reactions with diazocarbonyl compounds [Internet]. Current Organic Synthesis. 2015 ; 12( 5): 650-659.[citado 2024 set. 27 ] Available from: https://doi.org/10.2174/157017941205150821153658
    • Vancouver

      Burtoloso ACB, Santiago JV, Bernardim B, Talero AG. Advances in the enantioselective metal-catalyzed N-H and O-H insertion reactions with diazocarbonyl compounds [Internet]. Current Organic Synthesis. 2015 ; 12( 5): 650-659.[citado 2024 set. 27 ] Available from: https://doi.org/10.2174/157017941205150821153658
  • Source: International Journal of Hydrogen Energy. Unidade: IQSC

    Assunto: ELETROQUÍMICA

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      VEIZAGA, Natalia S. et al. Development of PtGe and PtIn anodic catalysts supported on carbonaceous materials for DMFC. International Journal of Hydrogen Energy, v. 39, p. 8728-8737, 2014Tradução . . Disponível em: https://doi.org/10.1016/j.ijhydene.2013.12.041. Acesso em: 27 set. 2024.
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      Veizaga, N. S., Paganin, V. A., Rocha, T. de A., Scelza, O. A., Miguel, S. R. de, & Gonzalez, E. R. (2014). Development of PtGe and PtIn anodic catalysts supported on carbonaceous materials for DMFC. International Journal of Hydrogen Energy, 39, 8728-8737. doi:10.1016/j.ijhydene.2013.12.041
    • NLM

      Veizaga NS, Paganin VA, Rocha T de A, Scelza OA, Miguel SR de, Gonzalez ER. Development of PtGe and PtIn anodic catalysts supported on carbonaceous materials for DMFC [Internet]. International Journal of Hydrogen Energy. 2014 ; 39 8728-8737.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.ijhydene.2013.12.041
    • Vancouver

      Veizaga NS, Paganin VA, Rocha T de A, Scelza OA, Miguel SR de, Gonzalez ER. Development of PtGe and PtIn anodic catalysts supported on carbonaceous materials for DMFC [Internet]. International Journal of Hydrogen Energy. 2014 ; 39 8728-8737.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.ijhydene.2013.12.041
  • Source: Thin Solid Films. Unidade: IQSC

    Subjects: FILMES FINOS, NANOPARTÍCULAS

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    • ABNT

      MIGLIORINI, Fernanda Lanzoni et al. Doped diamond electrodes on titanium substrates with controlled sp2/sp3 hybridization at different boron levels. Thin Solid Films, v. 564, p. 97-103, 2014Tradução . . Disponível em: https://doi.org/10.1016/j.tsf.2014.05.037. Acesso em: 27 set. 2024.
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      Migliorini, F. L., Alegre, M. D., Baldan, M. R., Lanza, M. R. de V., & Ferreira, N. G. (2014). Doped diamond electrodes on titanium substrates with controlled sp2/sp3 hybridization at different boron levels. Thin Solid Films, 564, 97-103. doi:10.1016/j.tsf.2014.05.037
    • NLM

      Migliorini FL, Alegre MD, Baldan MR, Lanza MR de V, Ferreira NG. Doped diamond electrodes on titanium substrates with controlled sp2/sp3 hybridization at different boron levels [Internet]. Thin Solid Films. 2014 ; 564 97-103.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.tsf.2014.05.037
    • Vancouver

      Migliorini FL, Alegre MD, Baldan MR, Lanza MR de V, Ferreira NG. Doped diamond electrodes on titanium substrates with controlled sp2/sp3 hybridization at different boron levels [Internet]. Thin Solid Films. 2014 ; 564 97-103.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.tsf.2014.05.037
  • Source: Archives of Microbiology. Unidade: IQSC

    Assunto: MICROBIOLOGIA

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      PASSARINI, Michel Rodrigo Zambrano et al. Filamentous fungi from the atlantic marine sponge dragmacidon reticulatum. Archives of Microbiology, v. 195, n. 2, p. 99-111, 2013Tradução . . Disponível em: https://doi.org/10.1007/s00203-012-0854-6. Acesso em: 27 set. 2024.
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      Passarini, M. R. Z., Santos, C., Lima, N., Berlinck, R. G. de S., & Sette, L. D. (2013). Filamentous fungi from the atlantic marine sponge dragmacidon reticulatum. Archives of Microbiology, 195( 2), 99-111. doi:10.1007/s00203-012-0854-6
    • NLM

      Passarini MRZ, Santos C, Lima N, Berlinck RG de S, Sette LD. Filamentous fungi from the atlantic marine sponge dragmacidon reticulatum [Internet]. Archives of Microbiology. 2013 ; 195( 2): 99-111.[citado 2024 set. 27 ] Available from: https://doi.org/10.1007/s00203-012-0854-6
    • Vancouver

      Passarini MRZ, Santos C, Lima N, Berlinck RG de S, Sette LD. Filamentous fungi from the atlantic marine sponge dragmacidon reticulatum [Internet]. Archives of Microbiology. 2013 ; 195( 2): 99-111.[citado 2024 set. 27 ] Available from: https://doi.org/10.1007/s00203-012-0854-6
  • Source: Industrial Crops and Products. Unidade: IQSC

    Assunto: POLÍMEROS (MATERIAIS)

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      FROLLINI, Elisabete et al. Poly(butylene succinate) reinforced with different lignocellulosic fibers. Industrial Crops and Products, v. 45 p. 160-169, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.indcrop.2012.12.013. Acesso em: 27 set. 2024.
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      Frollini, E., Bartolucci, N., Sisti, L., & Celli, A. (2013). Poly(butylene succinate) reinforced with different lignocellulosic fibers. Industrial Crops and Products, 45 p. 160-169. doi:10.1016/j.indcrop.2012.12.013
    • NLM

      Frollini E, Bartolucci N, Sisti L, Celli A. Poly(butylene succinate) reinforced with different lignocellulosic fibers [Internet]. Industrial Crops and Products. 2013 ; 45 p. 160-169[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.indcrop.2012.12.013
    • Vancouver

      Frollini E, Bartolucci N, Sisti L, Celli A. Poly(butylene succinate) reinforced with different lignocellulosic fibers [Internet]. Industrial Crops and Products. 2013 ; 45 p. 160-169[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.indcrop.2012.12.013

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