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Multipurpose made colorimetric materials for amines, pH change and metal ion detection.
Bao, Lihong; Jones, Leighton O; Garrote Cañas, Ana M; Yan, Yunhan; Pask, Christopher M; Hardie, Michaele J; Mosquera, Martin A; Schatz, George C; Sergeeva, Natalia N.
Afiliação
  • Bao L; School of Chemistry, University of Leeds LS2 9JT UK n.sergeeva@leeds.ac.uk.
  • Jones LO; School of Material Design and Engineering, Beijing Institute of Fashion Technology 100029 Beijing China.
  • Garrote Cañas AM; Department of Chemistry, Northwestern University Evanston 60208 Illinois USA.
  • Yan Y; School of Chemistry, University of Leeds LS2 9JT UK n.sergeeva@leeds.ac.uk.
  • Pask CM; School of Chemistry, University of Leeds LS2 9JT UK n.sergeeva@leeds.ac.uk.
  • Hardie MJ; School of Chemistry, University of Leeds LS2 9JT UK n.sergeeva@leeds.ac.uk.
  • Mosquera MA; Department of Chemistry, Northwestern University Evanston 60208 Illinois USA.
  • Schatz GC; Department of Chemistry and Biochemistry, Montana State University Bozeman 59717 Montana USA.
  • Sergeeva NN; Department of Chemistry, Northwestern University Evanston 60208 Illinois USA.
RSC Adv ; 12(5): 2684-2692, 2022 Jan 18.
Article em En | MEDLINE | ID: mdl-35425282
ABSTRACT
Sensors are routinely developed for specific applications, but multipurpose sensors are challenging, due to stability and poor functional design. We report organic materials that operate in solution and gas phase. They show a strong response behaviour to at least three types of environmental changes pH, amine and metal ion binding/detection. We have confirmed and validated our findings using various analytical and computational methods. We found that the changes in polarity of the solvent and pH not only red shift the tail of the absorption spectra, but also extend the peak optical absorption of these structures by up to 100 nm, with consequential effects on the optical gap and colour changes of the materials. Acid-base response has been studied by spectrophotometric titrations with trifluoroacetic acid (TFA) and triethyl amine (TEA). The experiments show excellent reversibility with greater sensitivity to base than acid for all compounds. Analysis into metal sensing using Zn(ii) and Cu(ii) ions as analytes show that the materials can successfully bind the cations forming stable complexes. Moreover, a strong suppression of signal with copper gives an operative modality to detect the copper ion as low as 2.5 × 10-6 M. The formation of the metal complexes was also confirmed by growing crystals using a slow diffusion method; subsequent single crystal X-ray analysis reveals the ratio of ligand to metal to be 2 to 1. To test sensitivity towards various amine vapours, paper-based sensors have been fabricated. The sensors show a detection capability at 1 ppm of amine concentration. We have employed CIE L*a*b* colour space as the evaluation method, this provides numeric comparison of the samples from different series and allows comparison of small colour differences, which are generally undetectable by the human-eye. It shows that the CIE L*a*b* method can assess both sensitivity to a particular class of analytes and a specificity response to individual amines in this subclass offering an inexpensive and versatile methodology.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Diagnostic_studies Idioma: En Ano de publicação: 2022 Tipo de documento: Article