Filtros : "Janegitz, Bruno Campos" Limpar

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  • Source: Talanta. Unidades: IQSC, IQ

    Subjects: ÁCIDO ÚRICO, PERÓXIDO DE HIDROGÊNIO

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      FREITAS, Rafaela Cristina de et al. Eco-friendly screen-printed sensor using tapioca-based conductive ink modified with coconut fibers. Talanta, v. 298, p. 128875, 2026Tradução . . Disponível em: https://doi.org/10.1016/j.talanta.2025.128875. Acesso em: 06 jan. 2026.
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      Freitas, R. C. de, Camargo, J. R., Brazaca, L. C., Angnes, L., Fatibello Filho, O., & Janegitz, B. C. (2026). Eco-friendly screen-printed sensor using tapioca-based conductive ink modified with coconut fibers. Talanta, 298, 128875. doi:10.1016/j.talanta.2025.128875
    • NLM

      Freitas RC de, Camargo JR, Brazaca LC, Angnes L, Fatibello Filho O, Janegitz BC. Eco-friendly screen-printed sensor using tapioca-based conductive ink modified with coconut fibers [Internet]. Talanta. 2026 ;298 128875.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.talanta.2025.128875
    • Vancouver

      Freitas RC de, Camargo JR, Brazaca LC, Angnes L, Fatibello Filho O, Janegitz BC. Eco-friendly screen-printed sensor using tapioca-based conductive ink modified with coconut fibers [Internet]. Talanta. 2026 ;298 128875.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.talanta.2025.128875
  • Conference titles: Brazil MRS Meeting. Unidades: IQSC, IQ

    Subjects: ELETROQUÍMICA, TINTAS, BIOPOLÍMEROS, SUSTENTABILIDADE

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      FREITAS, Rafaela Cristina de et al. Eco-friendly screen-printed electrochemical sensor by using tapioca-based conductive ink. 2025, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2025. Disponível em: https://www.sbpmat.org.br/23encontro/schedule/. Acesso em: 06 jan. 2026.
    • APA

      Freitas, R. C. de, Camargo, J. R., Brazaca, L. C., Angnes, L., Fatibello Filho, O., & Janegitz, B. C. (2025). Eco-friendly screen-printed electrochemical sensor by using tapioca-based conductive ink. In . Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://www.sbpmat.org.br/23encontro/schedule/
    • NLM

      Freitas RC de, Camargo JR, Brazaca LC, Angnes L, Fatibello Filho O, Janegitz BC. Eco-friendly screen-printed electrochemical sensor by using tapioca-based conductive ink [Internet]. 2025 ;[citado 2026 jan. 06 ] Available from: https://www.sbpmat.org.br/23encontro/schedule/
    • Vancouver

      Freitas RC de, Camargo JR, Brazaca LC, Angnes L, Fatibello Filho O, Janegitz BC. Eco-friendly screen-printed electrochemical sensor by using tapioca-based conductive ink [Internet]. 2025 ;[citado 2026 jan. 06 ] Available from: https://www.sbpmat.org.br/23encontro/schedule/
    GDS 12. Responsible consumption and production
  • Source: ACS Omega. Unidade: IQSC

    Subjects: ELETRODO, PALÁDIO, NANOPARTÍCULAS, SENSOR

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      CARVALHO, Jefferson H. S. et al. Paper-based electrochemical device modified with Palladium: Sensor for the detection of serotonin and an immunosensor for the detection of SOD1. ACS Omega, v. 10, p. 55887−55897, 2025Tradução . . Disponível em: https://doi.org/10.1021/acsomega.5c07375. Acesso em: 06 jan. 2026.
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      Carvalho, J. H. S., Faria, B. S., Freitas, R. C. de, Brazaca, L. C., & Janegitz, B. C. (2025). Paper-based electrochemical device modified with Palladium: Sensor for the detection of serotonin and an immunosensor for the detection of SOD1. ACS Omega, 10, 55887−55897. doi:10.1021/acsomega.5c07375
    • NLM

      Carvalho JHS, Faria BS, Freitas RC de, Brazaca LC, Janegitz BC. Paper-based electrochemical device modified with Palladium: Sensor for the detection of serotonin and an immunosensor for the detection of SOD1 [Internet]. ACS Omega. 2025 ;10 55887−55897.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1021/acsomega.5c07375
    • Vancouver

      Carvalho JHS, Faria BS, Freitas RC de, Brazaca LC, Janegitz BC. Paper-based electrochemical device modified with Palladium: Sensor for the detection of serotonin and an immunosensor for the detection of SOD1 [Internet]. ACS Omega. 2025 ;10 55887−55897.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1021/acsomega.5c07375
  • Source: Microchimica Acta. Unidade: IQSC

    Subjects: DOENÇA DE PARKINSON, ELETROQUÍMICA

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      ORZARI, Luiz Otávio et al. Lab‑made disposable screen‑printed electrochemical sensors and immunosensors modifed with Pd nanoparticles for Parkinson’s disease diagnostics. Microchimica Acta, v. 191, p. 76, 2024Tradução . . Disponível em: https://doi.org/10.1007/s00604-023-06158-3. Acesso em: 06 jan. 2026.
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      Orzari, L. O., Silva, L. R. G. e, Freitas, R. C. de, Brazaca, L. C., & Janegitz, B. C. (2024). Lab‑made disposable screen‑printed electrochemical sensors and immunosensors modifed with Pd nanoparticles for Parkinson’s disease diagnostics. Microchimica Acta, 191, 76. doi:10.1007/s00604-023-06158-3
    • NLM

      Orzari LO, Silva LRG e, Freitas RC de, Brazaca LC, Janegitz BC. Lab‑made disposable screen‑printed electrochemical sensors and immunosensors modifed with Pd nanoparticles for Parkinson’s disease diagnostics [Internet]. Microchimica Acta. 2024 ;191 76.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1007/s00604-023-06158-3
    • Vancouver

      Orzari LO, Silva LRG e, Freitas RC de, Brazaca LC, Janegitz BC. Lab‑made disposable screen‑printed electrochemical sensors and immunosensors modifed with Pd nanoparticles for Parkinson’s disease diagnostics [Internet]. Microchimica Acta. 2024 ;191 76.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1007/s00604-023-06158-3
  • Source: Microchimica Acta. Unidade: IQSC

    Subjects: VOLTAMETRIA, AMPEROMETRIA

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      BLASQUES, Rodrigo Vieira et al. Reusable graphite‑based electrochemical sensors for L‑dopa and dopamine detection. Microchimica Acta, p. 191-197, 2024Tradução . . Disponível em: https://doi.org/10.1007/s00604-024-06271-x. Acesso em: 06 jan. 2026.
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      Blasques, R. V., Stefano, J. S., Silva, V. A. O. P. da, Brazaca, L. C., & Janegitz, B. C. (2024). Reusable graphite‑based electrochemical sensors for L‑dopa and dopamine detection. Microchimica Acta, 191-197. doi:10.1007/s00604-024-06271-x
    • NLM

      Blasques RV, Stefano JS, Silva VAOP da, Brazaca LC, Janegitz BC. Reusable graphite‑based electrochemical sensors for L‑dopa and dopamine detection [Internet]. Microchimica Acta. 2024 ;191-197.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1007/s00604-024-06271-x
    • Vancouver

      Blasques RV, Stefano JS, Silva VAOP da, Brazaca LC, Janegitz BC. Reusable graphite‑based electrochemical sensors for L‑dopa and dopamine detection [Internet]. Microchimica Acta. 2024 ;191-197.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1007/s00604-024-06271-x
  • Source: Biosensors and Bioelectronics. Unidade: IQSC

    Subjects: DIAGNÓSTICO, BIOMARCADORES, PLASMA, URINA, SUOR

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      BRAZACA, Lais Canniatti et al. The use of biological fluids in microfluidic paper-based analytical devices (μPADs): Recent advances, challenges and future perspectives. Biosensors and Bioelectronics, v. 246, p. 115846, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.bios.2023.115846. Acesso em: 06 jan. 2026.
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      Brazaca, L. C., Imamura, A. H., Blasques, R. V., Camargo, J. R., Janegitz, B. C., & Carrilho, E. (2024). The use of biological fluids in microfluidic paper-based analytical devices (μPADs): Recent advances, challenges and future perspectives. Biosensors and Bioelectronics, 246, 115846. doi:10.1016/j.bios.2023.115846
    • NLM

      Brazaca LC, Imamura AH, Blasques RV, Camargo JR, Janegitz BC, Carrilho E. The use of biological fluids in microfluidic paper-based analytical devices (μPADs): Recent advances, challenges and future perspectives [Internet]. Biosensors and Bioelectronics. 2024 ;246 115846.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.bios.2023.115846
    • Vancouver

      Brazaca LC, Imamura AH, Blasques RV, Camargo JR, Janegitz BC, Carrilho E. The use of biological fluids in microfluidic paper-based analytical devices (μPADs): Recent advances, challenges and future perspectives [Internet]. Biosensors and Bioelectronics. 2024 ;246 115846.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.bios.2023.115846
  • Source: Resumos. Conference titles: Encontro Nacional de Química Analitica, ENQA. Unidade: IQSC

    Subjects: ELETROQUÍMICA, VÍRUS, VARÍOLA

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      SILVA, Luiz Ricardo Guterres e et al. Addittvely manufacturedelectrochemical genosnsor for the detection of human Monkeypox virus. 2024, Anais.. Belém: Sociedade Brasileira de Química (SBQ), 2024. Disponível em: https://repositorio.usp.br/directbitstream/f2522806-9fd0-4c02-9909-6c9b1ba2e1c0/P22029.pdf. Acesso em: 06 jan. 2026.
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      Silva, L. R. G. e, Stefano, J., Kalinke, C., Crapnell, R. D., Brazaca, L. C., M. Junior, L. H., et al. (2024). Addittvely manufacturedelectrochemical genosnsor for the detection of human Monkeypox virus. In Resumos. Belém: Sociedade Brasileira de Química (SBQ). Recuperado de https://repositorio.usp.br/directbitstream/f2522806-9fd0-4c02-9909-6c9b1ba2e1c0/P22029.pdf
    • NLM

      Silva LRG e, Stefano J, Kalinke C, Crapnell RD, Brazaca LC, M. Junior LH, Bergamini MF, Banks CE, Janegitz BC. Addittvely manufacturedelectrochemical genosnsor for the detection of human Monkeypox virus [Internet]. Resumos. 2024 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/f2522806-9fd0-4c02-9909-6c9b1ba2e1c0/P22029.pdf
    • Vancouver

      Silva LRG e, Stefano J, Kalinke C, Crapnell RD, Brazaca LC, M. Junior LH, Bergamini MF, Banks CE, Janegitz BC. Addittvely manufacturedelectrochemical genosnsor for the detection of human Monkeypox virus [Internet]. Resumos. 2024 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/f2522806-9fd0-4c02-9909-6c9b1ba2e1c0/P22029.pdf
  • Source: Trends in Analytical Chemistry. Unidade: IQ

    Subjects: AGRICULTURA SUSTENTÁVEL, COMPOSTOS ORGÂNICOS

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      CAMARGO, Jéssica Rocha et al. Advancements in disposable electrochemical systems for sustainable agriculture monitoring: trends, gaps, and applied examples. Trends in Analytical Chemistry, v. 180, p. 1-14 art. 117968, 2024Tradução . . Disponível em: https://dx.doi.org/10.1016/j.trac.2024.117968. Acesso em: 06 jan. 2026.
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      Camargo, J. R., Orzari, L. O., Rodrigues, J. de S., Lima, L. F. de, Paixão, T. R. L. C. da, Fraceto, L. F., & Janegitz, B. C. (2024). Advancements in disposable electrochemical systems for sustainable agriculture monitoring: trends, gaps, and applied examples. Trends in Analytical Chemistry, 180, 1-14 art. 117968. doi:10.1016/j.trac.2024.117968
    • NLM

      Camargo JR, Orzari LO, Rodrigues J de S, Lima LF de, Paixão TRLC da, Fraceto LF, Janegitz BC. Advancements in disposable electrochemical systems for sustainable agriculture monitoring: trends, gaps, and applied examples [Internet]. Trends in Analytical Chemistry. 2024 ; 180 1-14 art. 117968.[citado 2026 jan. 06 ] Available from: https://dx.doi.org/10.1016/j.trac.2024.117968
    • Vancouver

      Camargo JR, Orzari LO, Rodrigues J de S, Lima LF de, Paixão TRLC da, Fraceto LF, Janegitz BC. Advancements in disposable electrochemical systems for sustainable agriculture monitoring: trends, gaps, and applied examples [Internet]. Trends in Analytical Chemistry. 2024 ; 180 1-14 art. 117968.[citado 2026 jan. 06 ] Available from: https://dx.doi.org/10.1016/j.trac.2024.117968
  • Source: ACS Sustainable Chemistry and Engineering. Unidade: IQ

    Subjects: PIRÓLISE, NANOPARTÍCULAS

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      BLASQUES, Rodrigo Vieira et al. Green fabrication and analytical application of disposable carbon electrodes made from fallen tree leaves using a CO2 laser. ACS Sustainable Chemistry and Engineering, v. 12, p. 3061−3072, 2024Tradução . . Disponível em: https://dx.doi.org/10.1021/acssuschemeng.3c06526. Acesso em: 06 jan. 2026.
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      Blasques, R. V., Camargo, J. R., Veloso, W. B., Meloni, G. N., Fernandes, F. A., Germinare, B. F., et al. (2024). Green fabrication and analytical application of disposable carbon electrodes made from fallen tree leaves using a CO2 laser. ACS Sustainable Chemistry and Engineering, 12, 3061−3072. doi:10.1021/acssuschemeng.3c06526
    • NLM

      Blasques RV, Camargo JR, Veloso WB, Meloni GN, Fernandes FA, Germinare BF, Silva LRG e, Siervo A de, Paixão TRLC da, Janegitz BC. Green fabrication and analytical application of disposable carbon electrodes made from fallen tree leaves using a CO2 laser [Internet]. ACS Sustainable Chemistry and Engineering. 2024 ; 12 3061−3072.[citado 2026 jan. 06 ] Available from: https://dx.doi.org/10.1021/acssuschemeng.3c06526
    • Vancouver

      Blasques RV, Camargo JR, Veloso WB, Meloni GN, Fernandes FA, Germinare BF, Silva LRG e, Siervo A de, Paixão TRLC da, Janegitz BC. Green fabrication and analytical application of disposable carbon electrodes made from fallen tree leaves using a CO2 laser [Internet]. ACS Sustainable Chemistry and Engineering. 2024 ; 12 3061−3072.[citado 2026 jan. 06 ] Available from: https://dx.doi.org/10.1021/acssuschemeng.3c06526
  • Source: Microchimica Acta. Unidade: IQSC

    Subjects: DOENÇA DE PARKINSON, OURO, ELETRODO

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      ORZARI, Luiz Otávio e BRAZACA, Lais Canniatti e JANEGITZ, Bruno Campos. Parkinson biomarker determination with an Au microfower–enhanced electrochemical immunosensor using non‑Faradaic capacitance measurements. Microchimica Acta, p. 191-663, 2024Tradução . . Disponível em: https://doi.org/10.1007/s00604-024-06747-w. Acesso em: 06 jan. 2026.
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      Orzari, L. O., Brazaca, L. C., & Janegitz, B. C. (2024). Parkinson biomarker determination with an Au microfower–enhanced electrochemical immunosensor using non‑Faradaic capacitance measurements. Microchimica Acta, 191-663. doi:10.1007/s00604-024-06747-w
    • NLM

      Orzari LO, Brazaca LC, Janegitz BC. Parkinson biomarker determination with an Au microfower–enhanced electrochemical immunosensor using non‑Faradaic capacitance measurements [Internet]. Microchimica Acta. 2024 ;191-663.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1007/s00604-024-06747-w
    • Vancouver

      Orzari LO, Brazaca LC, Janegitz BC. Parkinson biomarker determination with an Au microfower–enhanced electrochemical immunosensor using non‑Faradaic capacitance measurements [Internet]. Microchimica Acta. 2024 ;191-663.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1007/s00604-024-06747-w
  • Source: Program. Conference titles: Brazil MRS Meeting. Unidades: IQSC, IFSC

    Subjects: OURO, NANOPARTÍCULAS, SENSORES BIOMÉDICOS

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      BRAZACA, Lais Canniatti et al. The effect of gold nanoparticle electrodeposition time in electrochemical immunosensing: a study based on Sprotein biosensors. 2023, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2023. Disponível em: https://repositorio.usp.br/directbitstream/27d90ba4-2172-491a-963a-6f1a3f930981/3157887.pdf. Acesso em: 06 jan. 2026.
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      Brazaca, L. C., Imamura, A. H., Gomes, N. O., Almeida, M. B., Scheidt, D. T., Raymundo-Pereira, P. A., et al. (2023). The effect of gold nanoparticle electrodeposition time in electrochemical immunosensing: a study based on Sprotein biosensors. In Program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://repositorio.usp.br/directbitstream/27d90ba4-2172-491a-963a-6f1a3f930981/3157887.pdf
    • NLM

      Brazaca LC, Imamura AH, Gomes NO, Almeida MB, Scheidt DT, Raymundo-Pereira PA, Oliveira Junior ON de, Janegitz BC, Machado SAS, Carrilho E. The effect of gold nanoparticle electrodeposition time in electrochemical immunosensing: a study based on Sprotein biosensors [Internet]. Program. 2023 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/27d90ba4-2172-491a-963a-6f1a3f930981/3157887.pdf
    • Vancouver

      Brazaca LC, Imamura AH, Gomes NO, Almeida MB, Scheidt DT, Raymundo-Pereira PA, Oliveira Junior ON de, Janegitz BC, Machado SAS, Carrilho E. The effect of gold nanoparticle electrodeposition time in electrochemical immunosensing: a study based on Sprotein biosensors [Internet]. Program. 2023 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/27d90ba4-2172-491a-963a-6f1a3f930981/3157887.pdf
  • Source: Graphene field-effect transistors: advanced bioelectronic devices for sensing applications. Unidade: IFSC

    Subjects: POLÍMEROS (MATERIAIS), SENSOR, NANOTECNOLOGIA, FILMES FINOS

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      VIEIRA, Nirton Cristi Silva et al. Solution-gated reduced graphene oxide FETs: device fabrication and biosensors applications. Graphene field-effect transistors: advanced bioelectronic devices for sensing applications. Tradução . Weinheim: Wiley-VCH, 2023. p. 448 . Disponível em: https://doi.org/10.1002/9783527843374.ch3. Acesso em: 06 jan. 2026.
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      Vieira, N. C. S., Ribeiro, B. C. de S., Blasques, R. V., Janegitz, B. C., Santos, F. A. dos, & Zucolotto, V. (2023). Solution-gated reduced graphene oxide FETs: device fabrication and biosensors applications. In Graphene field-effect transistors: advanced bioelectronic devices for sensing applications (p. 448 ). Weinheim: Wiley-VCH. doi:10.1002/9783527843374.ch3
    • NLM

      Vieira NCS, Ribeiro BC de S, Blasques RV, Janegitz BC, Santos FA dos, Zucolotto V. Solution-gated reduced graphene oxide FETs: device fabrication and biosensors applications [Internet]. In: Graphene field-effect transistors: advanced bioelectronic devices for sensing applications. Weinheim: Wiley-VCH; 2023. p. 448 .[citado 2026 jan. 06 ] Available from: https://doi.org/10.1002/9783527843374.ch3
    • Vancouver

      Vieira NCS, Ribeiro BC de S, Blasques RV, Janegitz BC, Santos FA dos, Zucolotto V. Solution-gated reduced graphene oxide FETs: device fabrication and biosensors applications [Internet]. In: Graphene field-effect transistors: advanced bioelectronic devices for sensing applications. Weinheim: Wiley-VCH; 2023. p. 448 .[citado 2026 jan. 06 ] Available from: https://doi.org/10.1002/9783527843374.ch3
  • Source: Program. Conference titles: Brazil MRS Meeting. Unidade: IFSC

    Subjects: SENSOR, ELETRODO, ELETROQUÍMICA

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      FREITAS, Rafaela Cristina de et al. Production and characterization of conductive ink based on commercial glue and graphite powder for the manufacture of screen-printed electrochemical sensors. 2023, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2023. Disponível em: https://repositorio.usp.br/directbitstream/d8dc79fb-e92c-4b1b-85db-31e96f237ae4/3157803.pdf. Acesso em: 06 jan. 2026.
    • APA

      Freitas, R. C. de, Fonseca, W. T., Azzi, D. C., Raymundo-Pereira, P. A., Oliveira Junior, O. N. de, & Janegitz, B. C. (2023). Production and characterization of conductive ink based on commercial glue and graphite powder for the manufacture of screen-printed electrochemical sensors. In Program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://repositorio.usp.br/directbitstream/d8dc79fb-e92c-4b1b-85db-31e96f237ae4/3157803.pdf
    • NLM

      Freitas RC de, Fonseca WT, Azzi DC, Raymundo-Pereira PA, Oliveira Junior ON de, Janegitz BC. Production and characterization of conductive ink based on commercial glue and graphite powder for the manufacture of screen-printed electrochemical sensors [Internet]. Program. 2023 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/d8dc79fb-e92c-4b1b-85db-31e96f237ae4/3157803.pdf
    • Vancouver

      Freitas RC de, Fonseca WT, Azzi DC, Raymundo-Pereira PA, Oliveira Junior ON de, Janegitz BC. Production and characterization of conductive ink based on commercial glue and graphite powder for the manufacture of screen-printed electrochemical sensors [Internet]. Program. 2023 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/d8dc79fb-e92c-4b1b-85db-31e96f237ae4/3157803.pdf
  • Unidade: IQSC

    Subjects: ELETROQUÍMICA, IMPRESSÃO 3-D, COVID-19

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      STEFANO, Jéssica Santos et al. Biossensor eletroquímico impresso em 3D para detecção do vírus da Covid-19 (SARS-COV-2). . Rio de Janeiro: Instituto de Química de São Carlos, Universidade de São Paulo. Disponível em: https://repositorio.usp.br/directbitstream/c3936c91-f728-4d88-9892-83dae4cd9537/P21471.pdf. Acesso em: 06 jan. 2026. , 2023
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      Stefano, J. S., Silva, L. R. G. e, Janegitz, B. C., Brazaca, L. C., Orzari, L. O., Munoz, R. A. A., et al. (2023). Biossensor eletroquímico impresso em 3D para detecção do vírus da Covid-19 (SARS-COV-2). Rio de Janeiro: Instituto de Química de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/c3936c91-f728-4d88-9892-83dae4cd9537/P21471.pdf
    • NLM

      Stefano JS, Silva LRG e, Janegitz BC, Brazaca LC, Orzari LO, Munoz RAA, Carrilho E, Marcolino Júnior LH, Bergamini MF. Biossensor eletroquímico impresso em 3D para detecção do vírus da Covid-19 (SARS-COV-2) [Internet]. 2023 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/c3936c91-f728-4d88-9892-83dae4cd9537/P21471.pdf
    • Vancouver

      Stefano JS, Silva LRG e, Janegitz BC, Brazaca LC, Orzari LO, Munoz RAA, Carrilho E, Marcolino Júnior LH, Bergamini MF. Biossensor eletroquímico impresso em 3D para detecção do vírus da Covid-19 (SARS-COV-2) [Internet]. 2023 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/c3936c91-f728-4d88-9892-83dae4cd9537/P21471.pdf
  • Source: Biosensors. Unidade: IQSC

    Subjects: DIAGNÓSTICO, COVID-19, ELETRODO, PLATINA, IMPRESSÃO 3-D

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      BLASQUES, Rodrigo Vieira et al. Flexible label-free Platinum and Bio-PET-Based immunosensor for the detection of SARS-CoV-2. Biosensors, v. 13, n. 2, p. 190 (1-19), 2023Tradução . . Disponível em: https://doi.org/10.3390/bios13020190. Acesso em: 06 jan. 2026.
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      Blasques, R. V., Oliveira, P. R. de, Kalinke, C., Brazaca, L. C., Crapnell, R. D., Bonacin, J. A., et al. (2023). Flexible label-free Platinum and Bio-PET-Based immunosensor for the detection of SARS-CoV-2. Biosensors, 13( 2), 190 (1-19). doi:10.3390/bios13020190
    • NLM

      Blasques RV, Oliveira PR de, Kalinke C, Brazaca LC, Crapnell RD, Bonacin JA, Banks CE, Janegitz BC. Flexible label-free Platinum and Bio-PET-Based immunosensor for the detection of SARS-CoV-2 [Internet]. Biosensors. 2023 ; 13( 2): 190 (1-19).[citado 2026 jan. 06 ] Available from: https://doi.org/10.3390/bios13020190
    • Vancouver

      Blasques RV, Oliveira PR de, Kalinke C, Brazaca LC, Crapnell RD, Bonacin JA, Banks CE, Janegitz BC. Flexible label-free Platinum and Bio-PET-Based immunosensor for the detection of SARS-CoV-2 [Internet]. Biosensors. 2023 ; 13( 2): 190 (1-19).[citado 2026 jan. 06 ] Available from: https://doi.org/10.3390/bios13020190
  • Conference titles: Brazil MRS Meeting. Unidade: IQSC

    Subjects: ELETROQUÍMICA, DIAGNÓSTICO, DOENÇA DE PARKINSON, SENSOR

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      ORZARI, Luiz Otávio et al. Lab-made conductive ink for the production of immunosensors for α-synuclein detection in different matrices. 2023, Anais.. Rio de Janeiro: Instituto de Química de São Carlos, Universidade de São Paulo, 2023. Disponível em: https://repositorio.usp.br/directbitstream/3aab24b1-35a5-409b-89c0-8dbc5955a3b4/P20768.pdf. Acesso em: 06 jan. 2026.
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      Orzari, L. O., Silva, L. R. G. e, Freitas, R. C. de, Brazaca, L. C., & Janegitz, B. C. (2023). Lab-made conductive ink for the production of immunosensors for α-synuclein detection in different matrices. In . Rio de Janeiro: Instituto de Química de São Carlos, Universidade de São Paulo. Recuperado de https://repositorio.usp.br/directbitstream/3aab24b1-35a5-409b-89c0-8dbc5955a3b4/P20768.pdf
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      Orzari LO, Silva LRG e, Freitas RC de, Brazaca LC, Janegitz BC. Lab-made conductive ink for the production of immunosensors for α-synuclein detection in different matrices [Internet]. 2023 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/3aab24b1-35a5-409b-89c0-8dbc5955a3b4/P20768.pdf
    • Vancouver

      Orzari LO, Silva LRG e, Freitas RC de, Brazaca LC, Janegitz BC. Lab-made conductive ink for the production of immunosensors for α-synuclein detection in different matrices [Internet]. 2023 ;[citado 2026 jan. 06 ] Available from: https://repositorio.usp.br/directbitstream/3aab24b1-35a5-409b-89c0-8dbc5955a3b4/P20768.pdf
  • Source: Microchemical Journal. Unidade: IFSC

    Subjects: PARACETAMOL, BIOTECNOLOGIA, SENSOR

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      FREITAS, Rafaela Cristina de et al. Flexible electrochemical sensor printed with conductive ink made with craft glue and graphite to detect drug and neurotransmitter. Microchemical Journal, v. 191, p. 108823-1-108823-8, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2023.108823. Acesso em: 06 jan. 2026.
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      Freitas, R. C. de, Fonseca, W. T. da, Azzi, D. C., Raymundo-Pereira, P. A., Oliveira Junior, O. N. de, & Janegitz, B. C. (2023). Flexible electrochemical sensor printed with conductive ink made with craft glue and graphite to detect drug and neurotransmitter. Microchemical Journal, 191, 108823-1-108823-8. doi:10.1016/j.microc.2023.108823
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      Freitas RC de, Fonseca WT da, Azzi DC, Raymundo-Pereira PA, Oliveira Junior ON de, Janegitz BC. Flexible electrochemical sensor printed with conductive ink made with craft glue and graphite to detect drug and neurotransmitter [Internet]. Microchemical Journal. 2023 ; 191 108823-1-108823-8.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.microc.2023.108823
    • Vancouver

      Freitas RC de, Fonseca WT da, Azzi DC, Raymundo-Pereira PA, Oliveira Junior ON de, Janegitz BC. Flexible electrochemical sensor printed with conductive ink made with craft glue and graphite to detect drug and neurotransmitter [Internet]. Microchemical Journal. 2023 ; 191 108823-1-108823-8.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.microc.2023.108823
  • Source: Current Opinion in Electrochemistry. Unidade: IQ

    Subjects: ELETROQUÍMICA, SENSORES QUÍMICOS

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      STEFANO, Jéssica Santos et al. Different approaches for fabrication of low-cost electrochemical sensors. Current Opinion in Electrochemistry, v. 32, p. 1-9 art. 100893, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.coelec.2021.100893. Acesso em: 06 jan. 2026.
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      Stefano, J. S., Orzari, L. O., Silva Neto, H. A., Ataide, V. N. de, Mendes, L. F., Tomazelli, W. K., et al. (2022). Different approaches for fabrication of low-cost electrochemical sensors. Current Opinion in Electrochemistry, 32, 1-9 art. 100893. doi:10.1016/j.coelec.2021.100893
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      Stefano JS, Orzari LO, Silva Neto HA, Ataide VN de, Mendes LF, Tomazelli WK, Paixão TRLC da, Janegitz BC. Different approaches for fabrication of low-cost electrochemical sensors [Internet]. Current Opinion in Electrochemistry. 2022 ; 32 1-9 art. 100893.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.coelec.2021.100893
    • Vancouver

      Stefano JS, Orzari LO, Silva Neto HA, Ataide VN de, Mendes LF, Tomazelli WK, Paixão TRLC da, Janegitz BC. Different approaches for fabrication of low-cost electrochemical sensors [Internet]. Current Opinion in Electrochemistry. 2022 ; 32 1-9 art. 100893.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.coelec.2021.100893
  • Source: Analytical Chemistry. Unidade: IQ

    Subjects: ELETROQUÍMICA, TERCEIRA DIMENSÃO, IMPRESSÃO

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      STEFANO, Jéssica Santos et al. Electrochemical (Bio)sensors enabled by fused deposition modeling-based 3D printing: a guide to selecting designs, printing parameters, and post-treatment protocols. Analytical Chemistry, v. 94, p. 6417−6429, 2022Tradução . . Disponível em: https://doi.org/10.1021/acs.analchem.1c05523. Acesso em: 06 jan. 2026.
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      Stefano, J. S., Kalinke, C., Rocha, R. G. da, Rocha, D. P., Silva, V. A. O. P. da, Bonacin, J. A., et al. (2022). Electrochemical (Bio)sensors enabled by fused deposition modeling-based 3D printing: a guide to selecting designs, printing parameters, and post-treatment protocols. Analytical Chemistry, 94, 6417−6429. doi:10.1021/acs.analchem.1c05523
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      Stefano JS, Kalinke C, Rocha RG da, Rocha DP, Silva VAOP da, Bonacin JA, Angnes L, Richter EM, Janegitz BC, Munõz RAA. Electrochemical (Bio)sensors enabled by fused deposition modeling-based 3D printing: a guide to selecting designs, printing parameters, and post-treatment protocols [Internet]. Analytical Chemistry. 2022 ; 94 6417−6429.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1021/acs.analchem.1c05523
    • Vancouver

      Stefano JS, Kalinke C, Rocha RG da, Rocha DP, Silva VAOP da, Bonacin JA, Angnes L, Richter EM, Janegitz BC, Munõz RAA. Electrochemical (Bio)sensors enabled by fused deposition modeling-based 3D printing: a guide to selecting designs, printing parameters, and post-treatment protocols [Internet]. Analytical Chemistry. 2022 ; 94 6417−6429.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1021/acs.analchem.1c05523
  • Source: Analytica Chimica Acta. Unidade: IQSC

    Subjects: VIROSES, ELETROQUÍMICA

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      BRAZACA, Lais Canniatti et al. Biosensing strategies for the electrochemical detection of viruses and viral diseases: A review. Analytica Chimica Acta, v. 1159, p. 338384, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.aca.2021.338384. Acesso em: 06 jan. 2026.
    • APA

      Brazaca, L. C., dos Santos, P. L., de Oliveira, P. R., Rocha, D. P., Stefano, J. S., Kalinke, C., et al. (2021). Biosensing strategies for the electrochemical detection of viruses and viral diseases: A review. Analytica Chimica Acta, 1159, 338384. doi:10.1016/j.aca.2021.338384
    • NLM

      Brazaca LC, dos Santos PL, de Oliveira PR, Rocha DP, Stefano JS, Kalinke C, Munoz RAA, Bonacin JA, Janegitz BC, Carrilho E. Biosensing strategies for the electrochemical detection of viruses and viral diseases: A review [Internet]. Analytica Chimica Acta. 2021 ; 1159 338384.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.aca.2021.338384
    • Vancouver

      Brazaca LC, dos Santos PL, de Oliveira PR, Rocha DP, Stefano JS, Kalinke C, Munoz RAA, Bonacin JA, Janegitz BC, Carrilho E. Biosensing strategies for the electrochemical detection of viruses and viral diseases: A review [Internet]. Analytica Chimica Acta. 2021 ; 1159 338384.[citado 2026 jan. 06 ] Available from: https://doi.org/10.1016/j.aca.2021.338384

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