Filtros : "ACS Applied Materials and Interfaces" "Indexado na Web of Science" Removido: "IFSC" Limpar

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  • Source: ACS Applied Materials and Interfaces. Unidade: EESC

    Subjects: BIOFILMES, IMPLANTES DENTÁRIOS, CORROSÃO, ENGENHARIA MECÂNICA

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      MALHEIROS, Samuel S. et al. Zinc-doped antibacterial coating as a single approach to unlock multifunctional and highly resistant titanium implant surfaces. ACS Applied Materials and Interfaces, v. 17, n. 12, p. 18022-18045, 2025Tradução . . Disponível em: https://dx.doi.org/10.1021/acsami.4c21875. Acesso em: 22 nov. 2025.
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      Malheiros, S. S., Borges, M. H. R., Rangel, E. C., Fortulan, C. A., Cruz, N. C. da, Barão, V. A. R., & Nagay, B. E. (2025). Zinc-doped antibacterial coating as a single approach to unlock multifunctional and highly resistant titanium implant surfaces. ACS Applied Materials and Interfaces, 17( 12), 18022-18045. doi:10.1021/acsami.4c21875
    • NLM

      Malheiros SS, Borges MHR, Rangel EC, Fortulan CA, Cruz NC da, Barão VAR, Nagay BE. Zinc-doped antibacterial coating as a single approach to unlock multifunctional and highly resistant titanium implant surfaces [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( 12): 18022-18045.[citado 2025 nov. 22 ] Available from: https://dx.doi.org/10.1021/acsami.4c21875
    • Vancouver

      Malheiros SS, Borges MHR, Rangel EC, Fortulan CA, Cruz NC da, Barão VAR, Nagay BE. Zinc-doped antibacterial coating as a single approach to unlock multifunctional and highly resistant titanium implant surfaces [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( 12): 18022-18045.[citado 2025 nov. 22 ] Available from: https://dx.doi.org/10.1021/acsami.4c21875
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: OURO, BACTÉRIAS

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      PIMENTEL, Gabriel J. C. et al. Ultradense Electrochemical Chips with Arrays of Nanostructured Microelectrodes to Enable Sensitive Diffusion-Limited Bioassays. ACS Applied Materials and Interfaces, v. 17, n. 9, p. 13037–13049, 2025Tradução . . Disponível em: https://doi.org/10.1021/acsami.4c01159. Acesso em: 22 nov. 2025.
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      Pimentel, G. J. C., Ayres, L. B., Costa, J. N. Y., Paschoalino, W. J., Whitehead, K., Kubota, L. T., et al. (2025). Ultradense Electrochemical Chips with Arrays of Nanostructured Microelectrodes to Enable Sensitive Diffusion-Limited Bioassays. ACS Applied Materials and Interfaces, 17( 9), 13037–13049. doi:10.1021/acsami.4c01159
    • NLM

      Pimentel GJC, Ayres LB, Costa JNY, Paschoalino WJ, Whitehead K, Kubota LT, Piazzetta MH de O, Gobbi AL, Shimizu FM, Garcia CD, Lima RS. Ultradense Electrochemical Chips with Arrays of Nanostructured Microelectrodes to Enable Sensitive Diffusion-Limited Bioassays [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( 9): 13037–13049.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.4c01159
    • Vancouver

      Pimentel GJC, Ayres LB, Costa JNY, Paschoalino WJ, Whitehead K, Kubota LT, Piazzetta MH de O, Gobbi AL, Shimizu FM, Garcia CD, Lima RS. Ultradense Electrochemical Chips with Arrays of Nanostructured Microelectrodes to Enable Sensitive Diffusion-Limited Bioassays [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( 9): 13037–13049.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.4c01159
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: AMÔNIA, NITRATOS, CATALISADORES

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      SOUZA, Marciélli K. R. et al. Effective nitrate electroconversion to ammonia using an entangled Co3O4/graphene nanoribbon catalyst. ACS Applied Materials and Interfaces, v. 17, p. 1295−1310, 2025Tradução . . Disponível em: https://doi.org/10.1021/acsami.4c18269. Acesso em: 22 nov. 2025.
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      Souza, M. K. R., Cardoso, E. S. F., Pinto, L. M. de C., Crivelli, I. S. C., Rodrigues, C. D., Souto, R. S., et al. (2025). Effective nitrate electroconversion to ammonia using an entangled Co3O4/graphene nanoribbon catalyst. ACS Applied Materials and Interfaces, 17, 1295−1310. doi:10.1021/acsami.4c18269
    • NLM

      Souza MKR, Cardoso ESF, Pinto LM de C, Crivelli ISC, Rodrigues CD, Souto RS, Rezende Filho AT, Lanza MR de V, Maia G. Effective nitrate electroconversion to ammonia using an entangled Co3O4/graphene nanoribbon catalyst [Internet]. ACS Applied Materials and Interfaces. 2025 ;17 1295−1310.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.4c18269
    • Vancouver

      Souza MKR, Cardoso ESF, Pinto LM de C, Crivelli ISC, Rodrigues CD, Souto RS, Rezende Filho AT, Lanza MR de V, Maia G. Effective nitrate electroconversion to ammonia using an entangled Co3O4/graphene nanoribbon catalyst [Internet]. ACS Applied Materials and Interfaces. 2025 ;17 1295−1310.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.4c18269
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  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: HIDROGÊNIO, FOTOCATÁLISE

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      CRUZ, Jean C. da et al. Cobalt Oxide on Boron-Doped Graphitic Carbon Nitride as Bifunctional Photocatalysts for CO2 Reduction and Hydrogen Evolution. ACS Applied Materials and Interfaces, v. 17, n. 9, p. 13029–13036, 2025Tradução . . Disponível em: https://doi.org/10.1021/acsami.3c18640. Acesso em: 22 nov. 2025.
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      Cruz, J. C. da, Silva, G. T. S. T. da, Dias, E. H., Lima, D. S. D., Torres, J. A., Silva, P. F. da, & Ribeiro, C. (2025). Cobalt Oxide on Boron-Doped Graphitic Carbon Nitride as Bifunctional Photocatalysts for CO2 Reduction and Hydrogen Evolution. ACS Applied Materials and Interfaces, 17( 9), 13029–13036. doi:10.1021/acsami.3c18640
    • NLM

      Cruz JC da, Silva GTST da, Dias EH, Lima DSD, Torres JA, Silva PF da, Ribeiro C. Cobalt Oxide on Boron-Doped Graphitic Carbon Nitride as Bifunctional Photocatalysts for CO2 Reduction and Hydrogen Evolution [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( 9): 13029–13036.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.3c18640
    • Vancouver

      Cruz JC da, Silva GTST da, Dias EH, Lima DSD, Torres JA, Silva PF da, Ribeiro C. Cobalt Oxide on Boron-Doped Graphitic Carbon Nitride as Bifunctional Photocatalysts for CO2 Reduction and Hydrogen Evolution [Internet]. ACS Applied Materials and Interfaces. 2025 ; 17( 9): 13029–13036.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.3c18640
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: ESTABILIDADE, CÉLULAS SOLARES

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      GONZÁLEZ, José Eduardo et al. Elucidating black α-CsPbI3 perovskite stabilization via PPD bication-conjugated molecule surface passivation: Ab Initio simulations. ACS Applied Materials and Interfaces, v. 16, p. 39251−39265, 2024Tradução . . Disponível em: https://doi.org/10.1021/acsami.4c05092. Acesso em: 22 nov. 2025.
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      González, J. E., Danelon, J. G., Silva, J. L. F. da, & Lima, M. P. (2024). Elucidating black α-CsPbI3 perovskite stabilization via PPD bication-conjugated molecule surface passivation: Ab Initio simulations. ACS Applied Materials and Interfaces, 16, 39251−39265. doi:10.1021/acsami.4c05092
    • NLM

      González JE, Danelon JG, Silva JLF da, Lima MP. Elucidating black α-CsPbI3 perovskite stabilization via PPD bication-conjugated molecule surface passivation: Ab Initio simulations [Internet]. ACS Applied Materials and Interfaces. 2024 ;16 39251−39265.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.4c05092
    • Vancouver

      González JE, Danelon JG, Silva JLF da, Lima MP. Elucidating black α-CsPbI3 perovskite stabilization via PPD bication-conjugated molecule surface passivation: Ab Initio simulations [Internet]. ACS Applied Materials and Interfaces. 2024 ;16 39251−39265.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.4c05092
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: BIOQUÍMICA ANALÍTICA, BIOTECNOLOGIA, NANOPARTÍCULAS, MOLÉCULA

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      ALMEIDA, Mariana Bortholazzi et al. Strategies employed to design biocompatible metal nanoparticles for medical science and biotechnology applications. ACS Applied Materials and Interfaces, v. 16, p. 67054−67072, 2024Tradução . . Disponível em: https://doi.org/10.1021/acsami.4c00838. Acesso em: 22 nov. 2025.
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      Almeida, M. B., Galdiano, C. M. R., Benvenuto, F. S. R. da S., Carrilho, E., & Brazaca, L. C. (2024). Strategies employed to design biocompatible metal nanoparticles for medical science and biotechnology applications. ACS Applied Materials and Interfaces, 16, 67054−67072. doi:10.1021/acsami.4c00838
    • NLM

      Almeida MB, Galdiano CMR, Benvenuto FSR da S, Carrilho E, Brazaca LC. Strategies employed to design biocompatible metal nanoparticles for medical science and biotechnology applications [Internet]. ACS Applied Materials and Interfaces. 2024 ;16 67054−67072.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.4c00838
    • Vancouver

      Almeida MB, Galdiano CMR, Benvenuto FSR da S, Carrilho E, Brazaca LC. Strategies employed to design biocompatible metal nanoparticles for medical science and biotechnology applications [Internet]. ACS Applied Materials and Interfaces. 2024 ;16 67054−67072.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.4c00838
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: QUÍMICA INORGÂNICA, CÉLULAS A COMBUSTÍVEL, METANOL

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      PLAÇA, Luiz Felipe et al. Black TiO2 photoanodes for direct methanol photo fuel cells. ACS Applied Materials and Interfaces, v. 15 n. 7, p. 43259–43271, 2023Tradução . . Disponível em: https://doi.org/10.1021/acsami.2c04802. Acesso em: 22 nov. 2025.
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      Plaça, L. F., Vital, P. -L. S., Gomes, L. E., Roveda Junior, A. C., Cardoso, D. R., Martins, C. A., & Wender, H. (2023). Black TiO2 photoanodes for direct methanol photo fuel cells. ACS Applied Materials and Interfaces, 15 n. 7, 43259–43271. doi:10.1021/acsami.2c04802
    • NLM

      Plaça LF, Vital P-LS, Gomes LE, Roveda Junior AC, Cardoso DR, Martins CA, Wender H. Black TiO2 photoanodes for direct methanol photo fuel cells [Internet]. ACS Applied Materials and Interfaces. 2023 ; 15 n. 7 43259–43271.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.2c04802
    • Vancouver

      Plaça LF, Vital P-LS, Gomes LE, Roveda Junior AC, Cardoso DR, Martins CA, Wender H. Black TiO2 photoanodes for direct methanol photo fuel cells [Internet]. ACS Applied Materials and Interfaces. 2023 ; 15 n. 7 43259–43271.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.2c04802
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: ELETROQUÍMICA, NANOPARTÍCULAS, PALÁDIO, OURO

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      FORTUNATO, Guilherme V. et al. Using Palladium and Gold Palladium Nanoparticles Decorated with Molybdenum Oxide for Versatile Hydrogen Peroxide Electroproduction on Graphene Nanoribbons. ACS Applied Materials and Interfaces, v. 14, p. 6777−6793, 2022Tradução . . Disponível em: https://doi.org/10.1021/acsami.1c22362. Acesso em: 22 nov. 2025.
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      Fortunato, G. V., Bezerra, L. S., Cardoso, E. S. F., Kronka, M. S., Santos, A. J. dos, Greco, A. S., et al. (2022). Using Palladium and Gold Palladium Nanoparticles Decorated with Molybdenum Oxide for Versatile Hydrogen Peroxide Electroproduction on Graphene Nanoribbons. ACS Applied Materials and Interfaces, 14, 6777−6793. doi:10.1021/acsami.1c22362
    • NLM

      Fortunato GV, Bezerra LS, Cardoso ESF, Kronka MS, Santos AJ dos, Greco AS, Júnior JLR, Lanza MR de V, Maia G. Using Palladium and Gold Palladium Nanoparticles Decorated with Molybdenum Oxide for Versatile Hydrogen Peroxide Electroproduction on Graphene Nanoribbons [Internet]. ACS Applied Materials and Interfaces. 2022 ; 14 6777−6793.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.1c22362
    • Vancouver

      Fortunato GV, Bezerra LS, Cardoso ESF, Kronka MS, Santos AJ dos, Greco AS, Júnior JLR, Lanza MR de V, Maia G. Using Palladium and Gold Palladium Nanoparticles Decorated with Molybdenum Oxide for Versatile Hydrogen Peroxide Electroproduction on Graphene Nanoribbons [Internet]. ACS Applied Materials and Interfaces. 2022 ; 14 6777−6793.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.1c22362
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: ELETROQUÍMICA, COVID-19, SENSOR

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      NICOLICHE, Caroline et al. In situ nanocoating on porous pyrolyzed paper enables antibiofouling and sensitive electrochemical analyses in biological fluids. ACS Applied Materials and Interfaces, v. 14, p. 2522−2533, 2022Tradução . . Disponível em: https://doi.org/10.1021/acsami.1c18778. Acesso em: 22 nov. 2025.
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      Nicoliche, C., Pascon, A. M., Bezerra, I. R. S., Castro, A. C. H. de, Martos, G. R., Bettini, J., et al. (2022). In situ nanocoating on porous pyrolyzed paper enables antibiofouling and sensitive electrochemical analyses in biological fluids. ACS Applied Materials and Interfaces, 14, 2522−2533. doi:10.1021/acsami.1c18778
    • NLM

      Nicoliche C, Pascon AM, Bezerra IRS, Castro ACH de, Martos GR, Bettini J, Alves WA, Santhiago M, Lima RS. In situ nanocoating on porous pyrolyzed paper enables antibiofouling and sensitive electrochemical analyses in biological fluids [Internet]. ACS Applied Materials and Interfaces. 2022 ; 14 2522−2533.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.1c18778
    • Vancouver

      Nicoliche C, Pascon AM, Bezerra IRS, Castro ACH de, Martos GR, Bettini J, Alves WA, Santhiago M, Lima RS. In situ nanocoating on porous pyrolyzed paper enables antibiofouling and sensitive electrochemical analyses in biological fluids [Internet]. ACS Applied Materials and Interfaces. 2022 ; 14 2522−2533.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.1c18778
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: ELETRODO, GASES VENENOSOS, ETANOL

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      GIORDANO, Gabriela F. et al. Bifunctional Metal Meshes Acting as a Semipermeable Membrane and Electrode for Sensitive Electrochemical Determination of Volatile Compounds. ACS Applied Materials and Interfaces, v. 13, p. 35914–35923, 2021Tradução . . Disponível em: https://doi-org.ez67.periodicos.capes.gov.br/10.1021/acsami.1c07874. Acesso em: 22 nov. 2025.
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      Giordano, G. F., Freitas, V. M. S., Schleder, G. R., Santhiago, M., Gobbi, A. L., & Lima, R. S. (2021). Bifunctional Metal Meshes Acting as a Semipermeable Membrane and Electrode for Sensitive Electrochemical Determination of Volatile Compounds. ACS Applied Materials and Interfaces, 13, 35914–35923. doi:10.1021/acsami.1c07874
    • NLM

      Giordano GF, Freitas VMS, Schleder GR, Santhiago M, Gobbi AL, Lima RS. Bifunctional Metal Meshes Acting as a Semipermeable Membrane and Electrode for Sensitive Electrochemical Determination of Volatile Compounds [Internet]. ACS Applied Materials and Interfaces. 2021 ;13 35914–35923.[citado 2025 nov. 22 ] Available from: https://doi-org.ez67.periodicos.capes.gov.br/10.1021/acsami.1c07874
    • Vancouver

      Giordano GF, Freitas VMS, Schleder GR, Santhiago M, Gobbi AL, Lima RS. Bifunctional Metal Meshes Acting as a Semipermeable Membrane and Electrode for Sensitive Electrochemical Determination of Volatile Compounds [Internet]. ACS Applied Materials and Interfaces. 2021 ;13 35914–35923.[citado 2025 nov. 22 ] Available from: https://doi-org.ez67.periodicos.capes.gov.br/10.1021/acsami.1c07874
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Subjects: ELETROCATÁLISE, ENERGIA, HIDROGÊNIO

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      KOVERGA, Andrey A. et al. Role of Transition Metals on TM/Mo2C Composites: Hydrogen Evolution Activity in Mildly Acidic and Alkaline Media. ACS Applied Materials and Interfaces, v. 12, n. 24, p. 27150–27165 May, 2020Tradução . . Disponível em: https://doi.org/10.1021/acsami.0c04806. Acesso em: 22 nov. 2025.
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      Koverga, A. A., Gomez-Marín, A. M., Dorkis, L., Flórez, E., & Ticianelli, E. A. (2020). Role of Transition Metals on TM/Mo2C Composites: Hydrogen Evolution Activity in Mildly Acidic and Alkaline Media. ACS Applied Materials and Interfaces, 12( 24), 27150–27165 May. doi:10.1021/acsami.0c04806
    • NLM

      Koverga AA, Gomez-Marín AM, Dorkis L, Flórez E, Ticianelli EA. Role of Transition Metals on TM/Mo2C Composites: Hydrogen Evolution Activity in Mildly Acidic and Alkaline Media [Internet]. ACS Applied Materials and Interfaces. 2020 ; 12( 24): 27150–27165 May.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.0c04806
    • Vancouver

      Koverga AA, Gomez-Marín AM, Dorkis L, Flórez E, Ticianelli EA. Role of Transition Metals on TM/Mo2C Composites: Hydrogen Evolution Activity in Mildly Acidic and Alkaline Media [Internet]. ACS Applied Materials and Interfaces. 2020 ; 12( 24): 27150–27165 May.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.0c04806
  • Source: ACS Applied Materials and Interfaces. Unidades: IQSC, EESC

    Subjects: FOTOCATÁLISE, POLUIÇÃO DA ÁGUA, TRATAMENTO DE ÁGUA

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      FERREIRA NETO, Elias Paiva et al. Bacterial Nanocellulose/MoS2 Hybrid Aerogels as Bifunctional Adsorbent/Photocatalyst Membranes for in-Flow Water Decontamination. ACS Applied Materials and Interfaces, v. 12, p. 41627-41643, 2020Tradução . . Disponível em: https://doi.org/10.1021/acsami.0c14137. Acesso em: 22 nov. 2025.
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      Ferreira Neto, E. P., Ullah, S., Silva, T. C. de A. da, Domeneguetti, R. R., Perissinotto, A. P., De Vicente, F. S., et al. (2020). Bacterial Nanocellulose/MoS2 Hybrid Aerogels as Bifunctional Adsorbent/Photocatalyst Membranes for in-Flow Water Decontamination. ACS Applied Materials and Interfaces, 12, 41627-41643. doi:10.1021/acsami.0c14137
    • NLM

      Ferreira Neto EP, Ullah S, Silva TC de A da, Domeneguetti RR, Perissinotto AP, De Vicente FS, Rodrigues Filho UP, Ribeiro SJL. Bacterial Nanocellulose/MoS2 Hybrid Aerogels as Bifunctional Adsorbent/Photocatalyst Membranes for in-Flow Water Decontamination [Internet]. ACS Applied Materials and Interfaces. 2020 ; 12 41627-41643.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.0c14137
    • Vancouver

      Ferreira Neto EP, Ullah S, Silva TC de A da, Domeneguetti RR, Perissinotto AP, De Vicente FS, Rodrigues Filho UP, Ribeiro SJL. Bacterial Nanocellulose/MoS2 Hybrid Aerogels as Bifunctional Adsorbent/Photocatalyst Membranes for in-Flow Water Decontamination [Internet]. ACS Applied Materials and Interfaces. 2020 ; 12 41627-41643.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.0c14137
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Assunto: CÉLULAS A COMBUSTÍVEL

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      BOTT NETO, José Luiz et al. Electrocatalytic Oxidation of Methanol, Ethanol, and Glycerol on Ni(OH)2 Nanoparticles Encapsulated with Poly[Ni(salen)] Film. ACS Applied Materials and Interfaces, v. 11, p. 30810-30818, 2019Tradução . . Disponível em: https://doi.org/10.1021/acsami.9b08441. Acesso em: 22 nov. 2025.
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      Bott Neto, J. L., Martins, T. S., Machado, S. A. S., & Ticianelli, E. A. (2019). Electrocatalytic Oxidation of Methanol, Ethanol, and Glycerol on Ni(OH)2 Nanoparticles Encapsulated with Poly[Ni(salen)] Film. ACS Applied Materials and Interfaces, 11, 30810-30818. doi:10.1021/acsami.9b08441
    • NLM

      Bott Neto JL, Martins TS, Machado SAS, Ticianelli EA. Electrocatalytic Oxidation of Methanol, Ethanol, and Glycerol on Ni(OH)2 Nanoparticles Encapsulated with Poly[Ni(salen)] Film [Internet]. ACS Applied Materials and Interfaces. 2019 ; 11 30810-30818.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.9b08441
    • Vancouver

      Bott Neto JL, Martins TS, Machado SAS, Ticianelli EA. Electrocatalytic Oxidation of Methanol, Ethanol, and Glycerol on Ni(OH)2 Nanoparticles Encapsulated with Poly[Ni(salen)] Film [Internet]. ACS Applied Materials and Interfaces. 2019 ; 11 30810-30818.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.9b08441
  • Source: ACS Applied Materials and Interfaces. Unidade: IQSC

    Assunto: FÍSICO-QUÍMICA

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      CABRAL, Luís et al. Tuning the Magnetic Properties of FeCo Thin Films Through Magneto-Elastic Effect Induced by the Au Underlayer Thickness. ACS Applied Materials and Interfaces, v. 11, n. 1, p. 1529-1537, 2019Tradução . . Disponível em: https://doi.org/10.1021/acsami.8b14736. Acesso em: 22 nov. 2025.
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      Cabral, L., Herrera Aragón, F. F., Villegas-Lelovsky, L., Lima, M. P., Macedo, W. A. A., & Silva, J. L. F. da. (2019). Tuning the Magnetic Properties of FeCo Thin Films Through Magneto-Elastic Effect Induced by the Au Underlayer Thickness. ACS Applied Materials and Interfaces, 11( 1), 1529-1537. doi:10.1021/acsami.8b14736
    • NLM

      Cabral L, Herrera Aragón FF, Villegas-Lelovsky L, Lima MP, Macedo WAA, Silva JLF da. Tuning the Magnetic Properties of FeCo Thin Films Through Magneto-Elastic Effect Induced by the Au Underlayer Thickness [Internet]. ACS Applied Materials and Interfaces. 2019 ; 11( 1): 1529-1537.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.8b14736
    • Vancouver

      Cabral L, Herrera Aragón FF, Villegas-Lelovsky L, Lima MP, Macedo WAA, Silva JLF da. Tuning the Magnetic Properties of FeCo Thin Films Through Magneto-Elastic Effect Induced by the Au Underlayer Thickness [Internet]. ACS Applied Materials and Interfaces. 2019 ; 11( 1): 1529-1537.[citado 2025 nov. 22 ] Available from: https://doi.org/10.1021/acsami.8b14736

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