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  • Source: Microchemical Journal. Unidade: IQSC

    Subjects: CROMATOGRAFIA LÍQUIDA, ESPECTROMETRIA DE MASSAS, HERBICIDAS

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      CARDOSO, Alessandra Timóteo e LANÇAS, Fernando Mauro. Determination of triazine herbicides in environmental waters using graphene oxide-ionic liquid-based SBSE coupled to capillary liquid chromatography-tandem mass spectrometry. Microchemical Journal, v. 215, p. 114270 ( 1-12), 2025Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2025.114270. Acesso em: 07 out. 2025.
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      Cardoso, A. T., & Lanças, F. M. (2025). Determination of triazine herbicides in environmental waters using graphene oxide-ionic liquid-based SBSE coupled to capillary liquid chromatography-tandem mass spectrometry. Microchemical Journal, 215, 114270 ( 1-12). doi:10.1016/j.microc.2025.114270
    • NLM

      Cardoso AT, Lanças FM. Determination of triazine herbicides in environmental waters using graphene oxide-ionic liquid-based SBSE coupled to capillary liquid chromatography-tandem mass spectrometry [Internet]. Microchemical Journal. 2025 ; 215 114270 ( 1-12).[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2025.114270
    • Vancouver

      Cardoso AT, Lanças FM. Determination of triazine herbicides in environmental waters using graphene oxide-ionic liquid-based SBSE coupled to capillary liquid chromatography-tandem mass spectrometry [Internet]. Microchemical Journal. 2025 ; 215 114270 ( 1-12).[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2025.114270
  • Source: Microchemical Journal. Unidade: CENA

    Subjects: CAFÉ, QUÍMICA ANALÍTICA, QUÍMICA VERDE, FOTOMETRIA, IMAGEM DIGITAL

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      SANTOS, Raíssa Tandara Maria dos et al. Environmentally friendly procedure for determination of total furfurals in coffees exploiting digital image photometry. Microchemical Journal, v. 208, p. 1-8, 2025Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2024.112543. Acesso em: 07 out. 2025.
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      Santos, R. T. M. dos, Martins, L. C., Soares, S., & Rocha, F. R. P. (2025). Environmentally friendly procedure for determination of total furfurals in coffees exploiting digital image photometry. Microchemical Journal, 208, 1-8. doi:10.1016/j.microc.2024.112543
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      Santos RTM dos, Martins LC, Soares S, Rocha FRP. Environmentally friendly procedure for determination of total furfurals in coffees exploiting digital image photometry [Internet]. Microchemical Journal. 2025 ; 208 1-8.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2024.112543
    • Vancouver

      Santos RTM dos, Martins LC, Soares S, Rocha FRP. Environmentally friendly procedure for determination of total furfurals in coffees exploiting digital image photometry [Internet]. Microchemical Journal. 2025 ; 208 1-8.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2024.112543
  • Source: Microchemical Journal. Unidade: CENA

    Subjects: METAIS, BIOMARCADORES, ESPECTROMETRIA DE MASSAS, ISÓTOPOS, PLASMA, SANGUE

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      OLIVEIRA, Poliana Borges de et al. Multi-isotope calibration strategy for trace elements determination in whole blood by inductively coupled plasma mass spectrometry. Microchemical Journal, v. 213, p. 1-7, 2025Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2025.113628. Acesso em: 07 out. 2025.
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      Oliveira, P. B. de, Krause, M., Vieira, L. V., Moreira, L. S., Virgilio, A., Brandão, G. P., & Carneiro, M. T. W. D. (2025). Multi-isotope calibration strategy for trace elements determination in whole blood by inductively coupled plasma mass spectrometry. Microchemical Journal, 213, 1-7. doi:10.1016/j.microc.2025.113628
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      Oliveira PB de, Krause M, Vieira LV, Moreira LS, Virgilio A, Brandão GP, Carneiro MTWD. Multi-isotope calibration strategy for trace elements determination in whole blood by inductively coupled plasma mass spectrometry [Internet]. Microchemical Journal. 2025 ; 213 1-7.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2025.113628
    • Vancouver

      Oliveira PB de, Krause M, Vieira LV, Moreira LS, Virgilio A, Brandão GP, Carneiro MTWD. Multi-isotope calibration strategy for trace elements determination in whole blood by inductively coupled plasma mass spectrometry [Internet]. Microchemical Journal. 2025 ; 213 1-7.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2025.113628
  • Source: Microchemical Journal. Unidade: CENA

    Subjects: RAIOS X, FLUORESCÊNCIA, ESPECTROMETRIA, METAIS, ANIMAIS, PASTEJO, OVELHAS, INGESTÃO, FEZES

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      OVANI, Vagner Silva et al. Use of energy dispersive X-ray fluorescence (EDXRF) spectrometry to determine external markers in animal intake estimation trials. Microchemical Journal, v. 212, p. 1-10, 2025Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2025.113582. Acesso em: 07 out. 2025.
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      Ovani, V. S., Almeida, E. de, Pérez-Márquez, S., Lima, P. de M. T., Louvandini, H., Carvalho, H. W. P. de, & Abdalla, A. L. (2025). Use of energy dispersive X-ray fluorescence (EDXRF) spectrometry to determine external markers in animal intake estimation trials. Microchemical Journal, 212, 1-10. doi:10.1016/j.microc.2025.113582
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      Ovani VS, Almeida E de, Pérez-Márquez S, Lima P de MT, Louvandini H, Carvalho HWP de, Abdalla AL. Use of energy dispersive X-ray fluorescence (EDXRF) spectrometry to determine external markers in animal intake estimation trials [Internet]. Microchemical Journal. 2025 ; 212 1-10.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2025.113582
    • Vancouver

      Ovani VS, Almeida E de, Pérez-Márquez S, Lima P de MT, Louvandini H, Carvalho HWP de, Abdalla AL. Use of energy dispersive X-ray fluorescence (EDXRF) spectrometry to determine external markers in animal intake estimation trials [Internet]. Microchemical Journal. 2025 ; 212 1-10.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2025.113582
    GDS 13. Climate action
  • Source: Microchemical Journal. Unidade: IQ

    Subjects: ELETRODO, COBRE

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      SARAVIA, Lucas Patricio Hernandez et al. Development of a fast and simple electrochemical sensor for trace determination of sulfite using copper(II) triazole complexes. Microchemical Journal, v. 201, p. 1-8 art. 110560, 2024Tradução . . Disponível em: https://dx.doi.org/10.1016/j.microc.2024.110560. Acesso em: 07 out. 2025.
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      Saravia, L. P. H., Núñez, C., Castroagudín, M., Bertotti, M., Vizcarra, A., Arriaza, B., & Nelson, R. (2024). Development of a fast and simple electrochemical sensor for trace determination of sulfite using copper(II) triazole complexes. Microchemical Journal, 201, 1-8 art. 110560. doi:10.1016/j.microc.2024.110560
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      Saravia LPH, Núñez C, Castroagudín M, Bertotti M, Vizcarra A, Arriaza B, Nelson R. Development of a fast and simple electrochemical sensor for trace determination of sulfite using copper(II) triazole complexes [Internet]. Microchemical Journal. 2024 ; 201 1-8 art. 110560.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110560
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      Saravia LPH, Núñez C, Castroagudín M, Bertotti M, Vizcarra A, Arriaza B, Nelson R. Development of a fast and simple electrochemical sensor for trace determination of sulfite using copper(II) triazole complexes [Internet]. Microchemical Journal. 2024 ; 201 1-8 art. 110560.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110560
  • Source: Microchemical Journal. Unidade: IQ

    Subjects: NANOPARTÍCULAS, ESPECTROSCOPIA

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      HUSSAIN, Sajjad et al. An R-type hexagonal ferrite nanoparticles-based electrochemical sensor for Levofloxacin detection in pharmaceutical and clinical specimens. Microchemical Journal, v. 201, p. 1-8 art. 110690, 2024Tradução . . Disponível em: https://dx.doi.org/10.1016/j.microc.2024.110690. Acesso em: 07 out. 2025.
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      Hussain, S., Sadiq, I., Baig, J. A., Bertotti, M., & Riaz, S. (2024). An R-type hexagonal ferrite nanoparticles-based electrochemical sensor for Levofloxacin detection in pharmaceutical and clinical specimens. Microchemical Journal, 201, 1-8 art. 110690. doi:10.1016/j.microc.2024.110690
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      Hussain S, Sadiq I, Baig JA, Bertotti M, Riaz S. An R-type hexagonal ferrite nanoparticles-based electrochemical sensor for Levofloxacin detection in pharmaceutical and clinical specimens [Internet]. Microchemical Journal. 2024 ; 201 1-8 art. 110690.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110690
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      Hussain S, Sadiq I, Baig JA, Bertotti M, Riaz S. An R-type hexagonal ferrite nanoparticles-based electrochemical sensor for Levofloxacin detection in pharmaceutical and clinical specimens [Internet]. Microchemical Journal. 2024 ; 201 1-8 art. 110690.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110690
  • Source: Microchemical Journal. Unidade: CENA

    Subjects: ANÁLISE EM FLUXO CONTÍNUO, QUÍMICA ANALÍTICA, ESPECTROMETRIA

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      SOARES, Sâmara e ROCHA, Fabio Rodrigo Piovezani. Exploiting multi-signal calibration to circumvent matrix effects in flow injection analysis. Microchemical Journal, v. 199, p. 1-7, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2024.110082. Acesso em: 07 out. 2025.
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      Soares, S., & Rocha, F. R. P. (2024). Exploiting multi-signal calibration to circumvent matrix effects in flow injection analysis. Microchemical Journal, 199, 1-7. doi:10.1016/j.microc.2024.110082
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      Soares S, Rocha FRP. Exploiting multi-signal calibration to circumvent matrix effects in flow injection analysis [Internet]. Microchemical Journal. 2024 ; 199 1-7.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2024.110082
    • Vancouver

      Soares S, Rocha FRP. Exploiting multi-signal calibration to circumvent matrix effects in flow injection analysis [Internet]. Microchemical Journal. 2024 ; 199 1-7.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2024.110082
  • Source: Microchemical Journal. Unidade: FCF

    Subjects: BIOMARCADORES, UREIA

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      SANTOS, Caroline Saur e BABY, André Rolim e LOURENÇO, Felipe Rebello. Simultaneous quantification of 2-pyrrolidone-5-carboxylic acid (PCA), urocanic acid (UCA), and histidine (His) in the stratum corneum by HPLC-PDA. Microchemical Journal, v. 206, p. 1-8 art. 111468, 2024Tradução . . Disponível em: https://dx.doi.org/10.1016/j.microc.2024.111468. Acesso em: 07 out. 2025.
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      Santos, C. S., Baby, A. R., & Lourenço, F. R. (2024). Simultaneous quantification of 2-pyrrolidone-5-carboxylic acid (PCA), urocanic acid (UCA), and histidine (His) in the stratum corneum by HPLC-PDA. Microchemical Journal, 206, 1-8 art. 111468. doi:10.1016/j.microc.2024.111468
    • NLM

      Santos CS, Baby AR, Lourenço FR. Simultaneous quantification of 2-pyrrolidone-5-carboxylic acid (PCA), urocanic acid (UCA), and histidine (His) in the stratum corneum by HPLC-PDA [Internet]. Microchemical Journal. 2024 ; 206 1-8 art. 111468.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.111468
    • Vancouver

      Santos CS, Baby AR, Lourenço FR. Simultaneous quantification of 2-pyrrolidone-5-carboxylic acid (PCA), urocanic acid (UCA), and histidine (His) in the stratum corneum by HPLC-PDA [Internet]. Microchemical Journal. 2024 ; 206 1-8 art. 111468.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.111468
  • Source: Microchemical Journal. Unidade: FCF

    Subjects: CROMATOGRAFIA LÍQUIDA DE ALTA EFICIÊNCIA, MEDICAMENTO

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      LOPES, Ivone de Jesus do Nascimento et al. Application of analytical quality by design (AQbD) for stability-indicating method development for quantification of nevirapine and its degradation products. Microchemical Journal, v. 199, p. 1-9 art. 109939, 2024Tradução . . Disponível em: https://dx.doi.org/10.1016/j.microc.2024.109939. Acesso em: 07 out. 2025.
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      Lopes, I. de J. do N., Fujimori, S. K., Mendes, T. de C., Almeida, R. A. D. de, Sousa, F. F. de M. de, Oliveira, C. A. de, et al. (2024). Application of analytical quality by design (AQbD) for stability-indicating method development for quantification of nevirapine and its degradation products. Microchemical Journal, 199, 1-9 art. 109939. doi:10.1016/j.microc.2024.109939
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      Lopes I de J do N, Fujimori SK, Mendes T de C, Almeida RAD de, Sousa FF de M de, Oliveira CA de, Nascimento DD do, Lourenço FR, Rodrigues MI, Prado LD. Application of analytical quality by design (AQbD) for stability-indicating method development for quantification of nevirapine and its degradation products [Internet]. Microchemical Journal. 2024 ; 199 1-9 art. 109939.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.109939
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      Lopes I de J do N, Fujimori SK, Mendes T de C, Almeida RAD de, Sousa FF de M de, Oliveira CA de, Nascimento DD do, Lourenço FR, Rodrigues MI, Prado LD. Application of analytical quality by design (AQbD) for stability-indicating method development for quantification of nevirapine and its degradation products [Internet]. Microchemical Journal. 2024 ; 199 1-9 art. 109939.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.109939
  • Source: Microchemical Journal. Unidades: IQ, MP, MAE

    Subjects: AQUARELA, MICROSCOPIA

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      SANTOS, Isabela Ferreira Sodré dos e FARIA, Dalva Lúcia Araújo de e MARINS, Paulo Cesar Garcez. Microanalytical investigation of brazilian coat of arms paintings on paper. Microchemical Journal, v. 201, p. 1-13 art. 110633, 2024Tradução . . Disponível em: https://dx.doi.org/10.1016/j.microc.2024.110633. Acesso em: 07 out. 2025.
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      Santos, I. F. S. dos, Faria, D. L. A. de, & Marins, P. C. G. (2024). Microanalytical investigation of brazilian coat of arms paintings on paper. Microchemical Journal, 201, 1-13 art. 110633. doi:10.1016/j.microc.2024.110633
    • NLM

      Santos IFS dos, Faria DLA de, Marins PCG. Microanalytical investigation of brazilian coat of arms paintings on paper [Internet]. Microchemical Journal. 2024 ; 201 1-13 art. 110633.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110633
    • Vancouver

      Santos IFS dos, Faria DLA de, Marins PCG. Microanalytical investigation of brazilian coat of arms paintings on paper [Internet]. Microchemical Journal. 2024 ; 201 1-13 art. 110633.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110633
  • Source: Microchemical Journal. Unidade: FCF

    Subjects: PARACETAMOL, MEDICAMENTO GENÉRICO

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      BERTANHA, Maria Luiza de Godoy e LOURENÇO, Felipe Rebello. Total combined risk of false conformity decisions in pharmaceutical equivalence of acetaminophen oral solution. Microchemical Journal, v. 201, p. 1-6 art. 110610, 2024Tradução . . Disponível em: https://dx.doi.org/10.1016/j.microc.2024.110610. Acesso em: 07 out. 2025.
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      Bertanha, M. L. de G., & Lourenço, F. R. (2024). Total combined risk of false conformity decisions in pharmaceutical equivalence of acetaminophen oral solution. Microchemical Journal, 201, 1-6 art. 110610. doi:10.1016/j.microc.2024.110610
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      Bertanha ML de G, Lourenço FR. Total combined risk of false conformity decisions in pharmaceutical equivalence of acetaminophen oral solution [Internet]. Microchemical Journal. 2024 ; 201 1-6 art. 110610.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110610
    • Vancouver

      Bertanha ML de G, Lourenço FR. Total combined risk of false conformity decisions in pharmaceutical equivalence of acetaminophen oral solution [Internet]. Microchemical Journal. 2024 ; 201 1-6 art. 110610.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110610
  • Source: Microchemical Journal. Unidade: FCF

    Subjects: COMPRIMIDOS, MEDIÇÃO DE RISCO, FORMAS FARMACÊUTICAS

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      SANO, Adriano Yuuki e LOURENÇO, Felipe Rebello. Measurement uncertainty arising from sampling and analytical steps of dissolution test of glyburide tablets. Microchemical Journal, v. 196, p. 1-6 art. 109552, 2024Tradução . . Disponível em: https://dx.doi.org/10.1016/j.microc.2023.109552. Acesso em: 07 out. 2025.
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      Sano, A. Y., & Lourenço, F. R. (2024). Measurement uncertainty arising from sampling and analytical steps of dissolution test of glyburide tablets. Microchemical Journal, 196, 1-6 art. 109552. doi:10.1016/j.microc.2023.109552
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      Sano AY, Lourenço FR. Measurement uncertainty arising from sampling and analytical steps of dissolution test of glyburide tablets [Internet]. Microchemical Journal. 2024 ; 196 1-6 art. 109552.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2023.109552
    • Vancouver

      Sano AY, Lourenço FR. Measurement uncertainty arising from sampling and analytical steps of dissolution test of glyburide tablets [Internet]. Microchemical Journal. 2024 ; 196 1-6 art. 109552.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2023.109552
  • Source: Microchemical Journal. Unidade: FCF

    Subjects: ANTIBIÓTICOS, MEDIÇÃO DE RISCO

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      KRAPIENIS, Michelly Gonçalves e LOURENÇO, Felipe Rebello. Agar diffusion microbiological assay measurement using a smartphone device and its measurement uncertainty using the bootstrapping method. Microchemical Journal, v. 200, p. 1-5 art. 110305, 2024Tradução . . Disponível em: https://dx.doi.org/10.1016/j.microc.2024.110305. Acesso em: 07 out. 2025.
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      Krapienis, M. G., & Lourenço, F. R. (2024). Agar diffusion microbiological assay measurement using a smartphone device and its measurement uncertainty using the bootstrapping method. Microchemical Journal, 200, 1-5 art. 110305. doi:10.1016/j.microc.2024.110305
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      Krapienis MG, Lourenço FR. Agar diffusion microbiological assay measurement using a smartphone device and its measurement uncertainty using the bootstrapping method [Internet]. Microchemical Journal. 2024 ; 200 1-5 art. 110305.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110305
    • Vancouver

      Krapienis MG, Lourenço FR. Agar diffusion microbiological assay measurement using a smartphone device and its measurement uncertainty using the bootstrapping method [Internet]. Microchemical Journal. 2024 ; 200 1-5 art. 110305.[citado 2025 out. 07 ] Available from: https://dx.doi.org/10.1016/j.microc.2024.110305
  • Source: Microchemical Journal. Unidade: IQSC

    Assunto: QUÍMICA ANALÍTICA

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      CARRILHO, Emanuel. Microchemical Journal. Microchemical Journal. New Jersey: Instituto de Química de São Carlos, Universidade de São Paulo. Disponível em: https://www.journals.elsevier.com/microchemical-journal/editorial-board. Acesso em: 07 out. 2025. , 2023
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      Carrilho, E. (2023). Microchemical Journal. Microchemical Journal. New Jersey: Instituto de Química de São Carlos, Universidade de São Paulo. Recuperado de https://www.journals.elsevier.com/microchemical-journal/editorial-board
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      Carrilho E. Microchemical Journal [Internet]. Microchemical Journal. 2023 ;[citado 2025 out. 07 ] Available from: https://www.journals.elsevier.com/microchemical-journal/editorial-board
    • Vancouver

      Carrilho E. Microchemical Journal [Internet]. Microchemical Journal. 2023 ;[citado 2025 out. 07 ] Available from: https://www.journals.elsevier.com/microchemical-journal/editorial-board
  • Source: Microchemical Journal. Unidade: IQ

    Subjects: SUBSTÂNCIAS TÓXICAS, ELETROQUÍMICA, SENSORES QUÍMICOS, NANOTECNOLOGIA

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      NEGAHDARY, Masoud et al. Recent electrochemical sensors and biosensors for toxic agents based on screen-printed electrodes equipped with nanomaterials. Microchemical Journal, v. 185, p. 1-18, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2022.108281. Acesso em: 07 out. 2025.
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      Negahdary, M., Ameku, W. A., Santos, B. G., Lima, I. dos S., Oliveira, T. G. de, França, M. C., & Angnes, L. (2023). Recent electrochemical sensors and biosensors for toxic agents based on screen-printed electrodes equipped with nanomaterials. Microchemical Journal, 185, 1-18. doi:10.1016/j.microc.2022.108281
    • NLM

      Negahdary M, Ameku WA, Santos BG, Lima I dos S, Oliveira TG de, França MC, Angnes L. Recent electrochemical sensors and biosensors for toxic agents based on screen-printed electrodes equipped with nanomaterials [Internet]. Microchemical Journal. 2023 ; 185 1-18.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.108281
    • Vancouver

      Negahdary M, Ameku WA, Santos BG, Lima I dos S, Oliveira TG de, França MC, Angnes L. Recent electrochemical sensors and biosensors for toxic agents based on screen-printed electrodes equipped with nanomaterials [Internet]. Microchemical Journal. 2023 ; 185 1-18.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.108281
  • Source: Microchemical Journal. Unidade: IQ

    Subjects: ELETROQUÍMICA, PORFIRINAS

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      DOZZA, Bianca et al. Spectroelectrochemistry as a powerful technique for porphyrins/corroles derivatives electro-characterization: fundamentals and some examples. Microchemical Journal, v. 183, p. 1-9 art. 108041, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2022.108041. Acesso em: 07 out. 2025.
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      Dozza, B., Rodrigues, B. M., Tisoco, I., Souza, V. B. de, Angnes, L., & Iglesias, B. A. (2022). Spectroelectrochemistry as a powerful technique for porphyrins/corroles derivatives electro-characterization: fundamentals and some examples. Microchemical Journal, 183, 1-9 art. 108041. doi:10.1016/j.microc.2022.108041
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      Dozza B, Rodrigues BM, Tisoco I, Souza VB de, Angnes L, Iglesias BA. Spectroelectrochemistry as a powerful technique for porphyrins/corroles derivatives electro-characterization: fundamentals and some examples [Internet]. Microchemical Journal. 2022 ; 183 1-9 art. 108041.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.108041
    • Vancouver

      Dozza B, Rodrigues BM, Tisoco I, Souza VB de, Angnes L, Iglesias BA. Spectroelectrochemistry as a powerful technique for porphyrins/corroles derivatives electro-characterization: fundamentals and some examples [Internet]. Microchemical Journal. 2022 ; 183 1-9 art. 108041.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.108041
  • Source: Microchemical Journal. Unidade: FCF

    Subjects: CROMATOGRAFIA LÍQUIDA, ANTIFÚNGICOS

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      SEPAROVIC, Luciana e LOURENÇO, Felipe Rebello. Measurement uncertainty evaluation of an analytical procedure for determination of terbinafine hydrochloride in creams by HPLC and optimization strategies using Analytical Quality by Design. Microchemical Journal, v. 178, p. 1-13 art. 107386, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2022.107386. Acesso em: 07 out. 2025.
    • APA

      Separovic, L., & Lourenço, F. R. (2022). Measurement uncertainty evaluation of an analytical procedure for determination of terbinafine hydrochloride in creams by HPLC and optimization strategies using Analytical Quality by Design. Microchemical Journal, 178, 1-13 art. 107386. doi:10.1016/j.microc.2022.107386
    • NLM

      Separovic L, Lourenço FR. Measurement uncertainty evaluation of an analytical procedure for determination of terbinafine hydrochloride in creams by HPLC and optimization strategies using Analytical Quality by Design [Internet]. Microchemical Journal. 2022 ; 178 1-13 art. 107386.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.107386
    • Vancouver

      Separovic L, Lourenço FR. Measurement uncertainty evaluation of an analytical procedure for determination of terbinafine hydrochloride in creams by HPLC and optimization strategies using Analytical Quality by Design [Internet]. Microchemical Journal. 2022 ; 178 1-13 art. 107386.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.107386
  • Source: Microchemical Journal. Unidades: FFCLRP, IAG

    Subjects: ETANOL, QUÍMICA ANALÍTICA, ELETRODO, SENSORES QUÍMICOS

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      LIMA, Guilherme Vieira et al. Electrochemical determination of ethanol on carbon paste electrode chemically modified with [N,N′-cis-1,2-cyclohexylene bis (salicylideneaminate)] nickel(II) Schiff base complex. Microchemical Journal, v. 175, p. 1-10, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2022.107209. Acesso em: 07 out. 2025.
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      Lima, G. V., Mello, L. dos S., Dockal, E. R., & Oliveira, M. F. de. (2022). Electrochemical determination of ethanol on carbon paste electrode chemically modified with [N,N′-cis-1,2-cyclohexylene bis (salicylideneaminate)] nickel(II) Schiff base complex. Microchemical Journal, 175, 1-10. doi:10.1016/j.microc.2022.107209
    • NLM

      Lima GV, Mello L dos S, Dockal ER, Oliveira MF de. Electrochemical determination of ethanol on carbon paste electrode chemically modified with [N,N′-cis-1,2-cyclohexylene bis (salicylideneaminate)] nickel(II) Schiff base complex [Internet]. Microchemical Journal. 2022 ; 175 1-10.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.107209
    • Vancouver

      Lima GV, Mello L dos S, Dockal ER, Oliveira MF de. Electrochemical determination of ethanol on carbon paste electrode chemically modified with [N,N′-cis-1,2-cyclohexylene bis (salicylideneaminate)] nickel(II) Schiff base complex [Internet]. Microchemical Journal. 2022 ; 175 1-10.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.107209
  • Source: Microchemical Journal. Unidades: FZEA, ESALQ, FMVZ

    Subjects: FRANGOS DE CORTE, MANIFESTAÇÕES NEUROMUSCULARES, RESSONÂNCIA MAGNÉTICA NUCLEAR (DIAGNÓSTICO), CARNES E DERIVADOS

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      CÔNSOLO, Nara Regina Brandão et al. Using TD-NMR relaxometry to assess the effects of diet type and stocking rate on the incidence and degree of severity of myopathies in broilers. Microchemical Journal, v. 181, p. 1-9, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2022.107745. Acesso em: 07 out. 2025.
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      Cônsolo, N. R. B., Barbosa, L. C. G. S., Moraes, T. B., Buraque, V. M., Colnago, L. A., Queiroz Junior, L. H. K., et al. (2022). Using TD-NMR relaxometry to assess the effects of diet type and stocking rate on the incidence and degree of severity of myopathies in broilers. Microchemical Journal, 181, 1-9. doi:10.1016/j.microc.2022.107745
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      Cônsolo NRB, Barbosa LCGS, Moraes TB, Buraque VM, Colnago LA, Queiroz Junior LHK, Oliveira VM, Hannaford R, Araújo CS da S, Roque F de A, Granghelli CA, Fonseca AC, Araújo LF. Using TD-NMR relaxometry to assess the effects of diet type and stocking rate on the incidence and degree of severity of myopathies in broilers [Internet]. Microchemical Journal. 2022 ; 181 1-9.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.107745
    • Vancouver

      Cônsolo NRB, Barbosa LCGS, Moraes TB, Buraque VM, Colnago LA, Queiroz Junior LHK, Oliveira VM, Hannaford R, Araújo CS da S, Roque F de A, Granghelli CA, Fonseca AC, Araújo LF. Using TD-NMR relaxometry to assess the effects of diet type and stocking rate on the incidence and degree of severity of myopathies in broilers [Internet]. Microchemical Journal. 2022 ; 181 1-9.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.107745
  • Source: Microchemical Journal. Unidade: IQ

    Subjects: ELETROQUÍMICA, ESPECTROSCOPIA RAMAN

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      MENDES, Letícia Francine e PRADELA FILHO, Lauro Antonio e PAIXÃO, Thiago Regis Longo Cesar da. Polyimide adhesive tapes as a versatile and disposable substrate to produce CO2 laser-induced carbon sensors for batch and microfluidic analysis. Microchemical Journal, v. 182, p. 1-8 art. 107893, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2022.107893. Acesso em: 07 out. 2025.
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      Mendes, L. F., Pradela Filho, L. A., & Paixão, T. R. L. C. da. (2022). Polyimide adhesive tapes as a versatile and disposable substrate to produce CO2 laser-induced carbon sensors for batch and microfluidic analysis. Microchemical Journal, 182, 1-8 art. 107893. doi:10.1016/j.microc.2022.107893.
    • NLM

      Mendes LF, Pradela Filho LA, Paixão TRLC da. Polyimide adhesive tapes as a versatile and disposable substrate to produce CO2 laser-induced carbon sensors for batch and microfluidic analysis [Internet]. Microchemical Journal. 2022 ; 182 1-8 art. 107893.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.107893.
    • Vancouver

      Mendes LF, Pradela Filho LA, Paixão TRLC da. Polyimide adhesive tapes as a versatile and disposable substrate to produce CO2 laser-induced carbon sensors for batch and microfluidic analysis [Internet]. Microchemical Journal. 2022 ; 182 1-8 art. 107893.[citado 2025 out. 07 ] Available from: https://doi.org/10.1016/j.microc.2022.107893.

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