Filtros : "GRU015" "Financiamento ANP" Removidos: "Irã" "Bettini, Jefferson" "FFLCH-FLC" Limpar

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  • Source: Geoenergy Science and Engineering. Unidade: IFSC

    Subjects: PETRÓLEO, ANTIFÚNGICOS, PEPTÍDEOS

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    • ABNT

      ARGENTIN, Marcela Nunes et al. Biosurfactant from a thermo-halophilic strain of Bacillus alveayuensis isolated from a Brazilian oil reservoir: production, chemical characterization, antimicrobial activity, and efficiency in wettability reversal and oil removal from oil-soaked sand. Geoenergy Science and Engineering, v. 231, p. 212324-1-212324-16 + supplementary data, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.geoen.2023.212324. Acesso em: 02 nov. 2024.
    • APA

      Argentin, M. N., Martins, L. F., Sousa, M. P. de, & Bossolan, N. R. S. (2023). Biosurfactant from a thermo-halophilic strain of Bacillus alveayuensis isolated from a Brazilian oil reservoir: production, chemical characterization, antimicrobial activity, and efficiency in wettability reversal and oil removal from oil-soaked sand. Geoenergy Science and Engineering, 231, 212324-1-212324-16 + supplementary data. doi:10.1016/j.geoen.2023.212324
    • NLM

      Argentin MN, Martins LF, Sousa MP de, Bossolan NRS. Biosurfactant from a thermo-halophilic strain of Bacillus alveayuensis isolated from a Brazilian oil reservoir: production, chemical characterization, antimicrobial activity, and efficiency in wettability reversal and oil removal from oil-soaked sand [Internet]. Geoenergy Science and Engineering. 2023 ; 231 212324-1-212324-16 + supplementary data.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1016/j.geoen.2023.212324
    • Vancouver

      Argentin MN, Martins LF, Sousa MP de, Bossolan NRS. Biosurfactant from a thermo-halophilic strain of Bacillus alveayuensis isolated from a Brazilian oil reservoir: production, chemical characterization, antimicrobial activity, and efficiency in wettability reversal and oil removal from oil-soaked sand [Internet]. Geoenergy Science and Engineering. 2023 ; 231 212324-1-212324-16 + supplementary data.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1016/j.geoen.2023.212324
  • Source: Journal of Physical Chemistry C. Unidades: IQSC, IFSC

    Subjects: FÍSICO-QUÍMICA, METAIS, QUÍMICA TEÓRICA

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    • ABNT

      SILVEIRA, Julian Francisco Rama Vieira et al. Tailoring excitonic and optoelectronic properties of transition metal dichalcogenide bilayers. Journal of Physical Chemistry C, v. 126, n. 21, p. 9173-9184, 2022Tradução . . Disponível em: https://doi.org/10.1021/acs.jpcc.2c02023. Acesso em: 02 nov. 2024.
    • APA

      Silveira, J. F. R. V., Besse, R., Dias, A. C., Caturello, N. A. M. S., & Silva, J. L. F. da. (2022). Tailoring excitonic and optoelectronic properties of transition metal dichalcogenide bilayers. Journal of Physical Chemistry C, 126( 21), 9173-9184. doi:10.1021/acs.jpcc.2c02023
    • NLM

      Silveira JFRV, Besse R, Dias AC, Caturello NAMS, Silva JLF da. Tailoring excitonic and optoelectronic properties of transition metal dichalcogenide bilayers [Internet]. Journal of Physical Chemistry C. 2022 ; 126( 21): 9173-9184.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1021/acs.jpcc.2c02023
    • Vancouver

      Silveira JFRV, Besse R, Dias AC, Caturello NAMS, Silva JLF da. Tailoring excitonic and optoelectronic properties of transition metal dichalcogenide bilayers [Internet]. Journal of Physical Chemistry C. 2022 ; 126( 21): 9173-9184.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1021/acs.jpcc.2c02023
  • Source: ChemNanoMat. Unidade: IFSC

    Subjects: PALÁDIO, CATÁLISE, IRRADIAÇÃO

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      MELO JUNIOR, Mauricio Alves de et al. Binary transition metal NiFeO and CoFeO cocatalysts boost the photodriven water oxidation over Fe TiO nanoparticles. ChemNanoMat, v. 8, n. 4, p. e202100510, 2022Tradução . . Disponível em: https://doi.org/10.1002/cnma.202100510. Acesso em: 02 nov. 2024.
    • APA

      Melo Junior, M. A. de, Centurion, H. A., Machado, G., Souza, F. L., & Gonçalves, R. V. (2022). Binary transition metal NiFeO and CoFeO cocatalysts boost the photodriven water oxidation over Fe TiO nanoparticles. ChemNanoMat, 8( 4), e202100510. doi:10.1002/cnma.202100510
    • NLM

      Melo Junior MA de, Centurion HA, Machado G, Souza FL, Gonçalves RV. Binary transition metal NiFeO and CoFeO cocatalysts boost the photodriven water oxidation over Fe TiO nanoparticles [Internet]. ChemNanoMat. 2022 ; 8( 4): e202100510.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1002/cnma.202100510
    • Vancouver

      Melo Junior MA de, Centurion HA, Machado G, Souza FL, Gonçalves RV. Binary transition metal NiFeO and CoFeO cocatalysts boost the photodriven water oxidation over Fe TiO nanoparticles [Internet]. ChemNanoMat. 2022 ; 8( 4): e202100510.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1002/cnma.202100510
  • Source: Book of abstracts. Conference titles: FEMS Conference on Microbiology. Unidade: IFSC

    Subjects: PETRÓLEO, ANTIFÚNGICOS, PEPTÍDEOS

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    • ABNT

      BOSSOLAN, Nelma Regina Segnini e ARGENTIN, Marcela Nunes. Biosurfactant from thermohalophilic strain of Bacillus alveayuensis: chemical characterization and antifungal activity. 2022, Anais.. Cambridge, UK: Federation of European Microbiological Societies - FEMS, 2022. Disponível em: https://www.femsbelgrade2022.org/abstract-book. Acesso em: 02 nov. 2024.
    • APA

      Bossolan, N. R. S., & Argentin, M. N. (2022). Biosurfactant from thermohalophilic strain of Bacillus alveayuensis: chemical characterization and antifungal activity. In Book of abstracts. Cambridge, UK: Federation of European Microbiological Societies - FEMS. Recuperado de https://www.femsbelgrade2022.org/abstract-book
    • NLM

      Bossolan NRS, Argentin MN. Biosurfactant from thermohalophilic strain of Bacillus alveayuensis: chemical characterization and antifungal activity [Internet]. Book of abstracts. 2022 ;[citado 2024 nov. 02 ] Available from: https://www.femsbelgrade2022.org/abstract-book
    • Vancouver

      Bossolan NRS, Argentin MN. Biosurfactant from thermohalophilic strain of Bacillus alveayuensis: chemical characterization and antifungal activity [Internet]. Book of abstracts. 2022 ;[citado 2024 nov. 02 ] Available from: https://www.femsbelgrade2022.org/abstract-book
  • Source: 2D Materials. Unidades: IQSC, IFSC

    Subjects: FÍSICO-QUÍMICA, HIBRIDIZAÇÃO

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      BESSE, Rafael et al. Beyond the Anderson rule: importance of interfacial dipole and hybridization in van der Waals heterostructures. 2D Materials, v. 8, n. 4, p. 041002-1-041002-7, 2021Tradução . . Disponível em: https://doi.org/10.1088/2053-1583/ac1902. Acesso em: 02 nov. 2024.
    • APA

      Besse, R., Silveira, J. F. R. V., Jiang, Z., West, D., Zhang, S., & Silva, J. L. F. da. (2021). Beyond the Anderson rule: importance of interfacial dipole and hybridization in van der Waals heterostructures. 2D Materials, 8( 4), 041002-1-041002-7. doi:10.1088/2053-1583/ac1902
    • NLM

      Besse R, Silveira JFRV, Jiang Z, West D, Zhang S, Silva JLF da. Beyond the Anderson rule: importance of interfacial dipole and hybridization in van der Waals heterostructures [Internet]. 2D Materials. 2021 ; 8( 4): 041002-1-041002-7.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1088/2053-1583/ac1902
    • Vancouver

      Besse R, Silveira JFRV, Jiang Z, West D, Zhang S, Silva JLF da. Beyond the Anderson rule: importance of interfacial dipole and hybridization in van der Waals heterostructures [Internet]. 2D Materials. 2021 ; 8( 4): 041002-1-041002-7.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1088/2053-1583/ac1902
  • Source: Fuel. Unidades: IFSC, IF, EESC

    Subjects: DEPÓSITOS DE COMBUSTÍVEL FÓSSIL, COBRE, OCEANOS

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      BERNARDINELLI, Oigres D. et al. Mechanism for enhanced oil recovery from carbonate reservoirs by adding copper ions to seawater. Fuel, v. 305, p. 121605-1-121605-8, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.fuel.2021.121605. Acesso em: 02 nov. 2024.
    • APA

      Bernardinelli, O. D., Zornio, B. F., Duarte, L. G. T. A., Almeida, J. M. de, Vilela, V. A. L. G., Palma Filho, N. B., et al. (2021). Mechanism for enhanced oil recovery from carbonate reservoirs by adding copper ions to seawater. Fuel, 305, 121605-1-121605-8. doi:10.1016/j.fuel.2021.121605
    • NLM

      Bernardinelli OD, Zornio BF, Duarte LGTA, Almeida JM de, Vilela VALG, Palma Filho NB, Aoki CY, Ruidiaz EM, Lamas LF, Soares GB, Almeida RV de, Miranda PB, Miranda CR, Sabadini E. Mechanism for enhanced oil recovery from carbonate reservoirs by adding copper ions to seawater [Internet]. Fuel. 2021 ; 305 121605-1-121605-8.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1016/j.fuel.2021.121605
    • Vancouver

      Bernardinelli OD, Zornio BF, Duarte LGTA, Almeida JM de, Vilela VALG, Palma Filho NB, Aoki CY, Ruidiaz EM, Lamas LF, Soares GB, Almeida RV de, Miranda PB, Miranda CR, Sabadini E. Mechanism for enhanced oil recovery from carbonate reservoirs by adding copper ions to seawater [Internet]. Fuel. 2021 ; 305 121605-1-121605-8.[citado 2024 nov. 02 ] Available from: https://doi.org/10.1016/j.fuel.2021.121605

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