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  • Source: ACS Applied Electronic Materials. Unidade: IFSC

    Subjects: ELETROQUÍMICA, TRANSISTORES, POLÍMEROS (MATERIAIS)

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    • ABNT

      LUGINIESKI, Marcos e TORRES, Bruno Bassi Millan e FARIA, Gregório Couto. Guidelines on measuring volumetric capacitance in organic electrochemical transistors. ACS Applied Electronic Materials, v. 6, n. 4, p. 2225-2231 + supporting information: S1-S10, 2024Tradução . . Disponível em: https://doi.org/10.1021/acsaelm.3c01673. Acesso em: 02 jun. 2024.
    • APA

      Luginieski, M., Torres, B. B. M., & Faria, G. C. (2024). Guidelines on measuring volumetric capacitance in organic electrochemical transistors. ACS Applied Electronic Materials, 6( 4), 2225-2231 + supporting information: S1-S10. doi:10.1021/acsaelm.3c01673
    • NLM

      Luginieski M, Torres BBM, Faria GC. Guidelines on measuring volumetric capacitance in organic electrochemical transistors [Internet]. ACS Applied Electronic Materials. 2024 ; 6( 4): 2225-2231 + supporting information: S1-S10.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1021/acsaelm.3c01673
    • Vancouver

      Luginieski M, Torres BBM, Faria GC. Guidelines on measuring volumetric capacitance in organic electrochemical transistors [Internet]. ACS Applied Electronic Materials. 2024 ; 6( 4): 2225-2231 + supporting information: S1-S10.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1021/acsaelm.3c01673
  • Source: ACS Applied Electronic Materials. Unidades: IFSC, EESC

    Subjects: ÁGUA, DIFRAÇÃO POR RAIOS X, ESPECTROSCOPIA

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    • ABNT

      LIMA, Bruno Sanches de et al. Experimental and theoretical insights into the structural disorder and gas sensing properties of ZnO. ACS Applied Electronic Materials, v. 3, n. 3, p. 1447-1457, 2021Tradução . . Disponível em: https://doi.org/10.1021/acsaelm.1c00058. Acesso em: 02 jun. 2024.
    • APA

      Lima, B. S. de, Martínez-Alanis, P. R., Güell, F., Silva, W. A. dos S., Bernardi, M. I. B., Marana, N. L., et al. (2021). Experimental and theoretical insights into the structural disorder and gas sensing properties of ZnO. ACS Applied Electronic Materials, 3( 3), 1447-1457. doi:10.1021/acsaelm.1c00058
    • NLM

      Lima BS de, Martínez-Alanis PR, Güell F, Silva WA dos S, Bernardi MIB, Marana NL, Longo E, Sambrano JR, Mastelaro VR. Experimental and theoretical insights into the structural disorder and gas sensing properties of ZnO [Internet]. ACS Applied Electronic Materials. 2021 ; 3( 3): 1447-1457.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1021/acsaelm.1c00058
    • Vancouver

      Lima BS de, Martínez-Alanis PR, Güell F, Silva WA dos S, Bernardi MIB, Marana NL, Longo E, Sambrano JR, Mastelaro VR. Experimental and theoretical insights into the structural disorder and gas sensing properties of ZnO [Internet]. ACS Applied Electronic Materials. 2021 ; 3( 3): 1447-1457.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1021/acsaelm.1c00058
  • Source: ACS Applied Electronic Materials. Unidade: IQ

    Subjects: BIOMARCADORES, NEOPLASIAS, ANATOMIA

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    • ABNT

      BALDO, Thaisa A et al. Wearable and biodegradable sensors for clinical and environmental applications. ACS Applied Electronic Materials, v. 3, n. 1, p. 68–100, 2021Tradução . . Disponível em: https://doi.org/10.1021/acsaelm.0c00735. Acesso em: 02 jun. 2024.
    • APA

      Baldo, T. A., Lima, L. F. de, Mendes, L. F., Araujo, W. R. de, Paixão, T. R. L. C. da, & Coltro, W. K. T. (2021). Wearable and biodegradable sensors for clinical and environmental applications. ACS Applied Electronic Materials, 3( 1), 68–100. doi:10.1021/acsaelm.0c00735
    • NLM

      Baldo TA, Lima LF de, Mendes LF, Araujo WR de, Paixão TRLC da, Coltro WKT. Wearable and biodegradable sensors for clinical and environmental applications [Internet]. ACS Applied Electronic Materials. 2021 ; 3( 1): 68–100.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1021/acsaelm.0c00735
    • Vancouver

      Baldo TA, Lima LF de, Mendes LF, Araujo WR de, Paixão TRLC da, Coltro WKT. Wearable and biodegradable sensors for clinical and environmental applications [Internet]. ACS Applied Electronic Materials. 2021 ; 3( 1): 68–100.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1021/acsaelm.0c00735
  • Source: ACS Applied Electronic Materials. Unidades: IQSC, IFSC

    Subjects: METAIS, ELETRÔNICA QUÂNTICA

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    • ABNT

      SILVEIRA, Julian Francisco Rama Vieira e BESSE, Rafael e SILVA, Juarez Lopes Ferreira da. Stacking order effects on the electronic and optical properties of graphene/transition metal dichalcogenide Van der Waals heterostructures. ACS Applied Electronic Materials, v. 3, n. 4, p. 1671-1680, 2021Tradução . . Disponível em: https://doi.org/10.1021/acsaelm.1c00009. Acesso em: 02 jun. 2024.
    • APA

      Silveira, J. F. R. V., Besse, R., & Silva, J. L. F. da. (2021). Stacking order effects on the electronic and optical properties of graphene/transition metal dichalcogenide Van der Waals heterostructures. ACS Applied Electronic Materials, 3( 4), 1671-1680. doi:10.1021/acsaelm.1c00009
    • NLM

      Silveira JFRV, Besse R, Silva JLF da. Stacking order effects on the electronic and optical properties of graphene/transition metal dichalcogenide Van der Waals heterostructures [Internet]. ACS Applied Electronic Materials. 2021 ; 3( 4): 1671-1680.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1021/acsaelm.1c00009
    • Vancouver

      Silveira JFRV, Besse R, Silva JLF da. Stacking order effects on the electronic and optical properties of graphene/transition metal dichalcogenide Van der Waals heterostructures [Internet]. ACS Applied Electronic Materials. 2021 ; 3( 4): 1671-1680.[citado 2024 jun. 02 ] Available from: https://doi.org/10.1021/acsaelm.1c00009

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