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Electronic Nose Based on Carbon Nanocomposite Sensors for Clove Essential Oil Detection.
Graboski, Adriana M; Zakrzevski, Claudio A; Shimizu, Flavio M; Paschoalin, Rafaella T; Soares, Andrey C; Steffens, Juliana; Paroul, Natalia; Steffens, Clarice.
Afiliación
  • Graboski AM; Food Engineering, URI-Erechim, Av. Sete de Setembro 1621, 99709-910 Erechim, Rio Grande do Sul, Brazil.
  • Zakrzevski CA; Food Engineering, URI-Erechim, Av. Sete de Setembro 1621, 99709-910 Erechim, Rio Grande do Sul, Brazil.
  • Shimizu FM; São Carlos Institute of Physics, University of São Paulo (USP), P.O. Box 369, 13566-590 São Carlos, São Paulo, Brazil.
  • Paschoalin RT; São Carlos Institute of Physics, University of São Paulo (USP), P.O. Box 369, 13566-590 São Carlos, São Paulo, Brazil.
  • Soares AC; Nanotechnology National Laboratory for Agribusiness (LNNA), Embrapa Instrumentation, 13560-970 São Carlos, São Paulo, Brazil.
  • Steffens J; Food Engineering, URI-Erechim, Av. Sete de Setembro 1621, 99709-910 Erechim, Rio Grande do Sul, Brazil.
  • Paroul N; Food Engineering, URI-Erechim, Av. Sete de Setembro 1621, 99709-910 Erechim, Rio Grande do Sul, Brazil.
  • Steffens C; Food Engineering, URI-Erechim, Av. Sete de Setembro 1621, 99709-910 Erechim, Rio Grande do Sul, Brazil.
ACS Sens ; 5(6): 1814-1821, 2020 06 26.
Article en En | MEDLINE | ID: mdl-32515185
ABSTRACT
This work describes the development of an electronic nose (e-nose) based on carbon nanocomposites to detect clove essential oil (CEO), eugenol (EUG), and eugenyl acetate (EUG.ACET). Our e-nose system comprises an array of six sensing units modified with nanocomposites of poly(aniline), graphene oxide, and multiwalled carbon nanotubes doped with different acids, dodecyl benzene sulfonic acid, camphorsulfonic acid, and hydrochloric acid. The e-nose presented an excellent analytical performance to the detected analytes (CEO, EUG, and EUG.ACET) with high sensitivity and reversibility. The limit of detection was lower than 1.045 ppb, with response time (<13.26 s) and recovery time (<106.29 s) and low hysteresis. Information visualization methods (PCA and IDMAP) demonstrated that the e-nose was efficient to discriminate the different concentrations of analyte volatile oil compounds. PM-IRRAS measurements suggest that the doping mechanism of molecular architectures is composed of a change in the oscillation energy of the characteristic dipoles and changes in the molecular orientation dipoles C═C and C═O at 1615 and 1740 cm-1, respectively. The experimental results indicate that our e-nose system is promising for a rapid analysis method to monitor the quality of essential oils.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Aceites Volátiles / Syzygium / Nanotubos de Carbono / Nanocompuestos Tipo de estudio: Diagnostic_studies Idioma: En Revista: ACS Sens Año: 2020 Tipo del documento: Article País de afiliación: Brasil

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Aceites Volátiles / Syzygium / Nanotubos de Carbono / Nanocompuestos Tipo de estudio: Diagnostic_studies Idioma: En Revista: ACS Sens Año: 2020 Tipo del documento: Article País de afiliación: Brasil