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A novel benzothiophene incorporated Schiff base acting as a "turn-on" sensor for the selective detection of Serine in organic medium.
Dhanya, T M; Krishnan, Aravind; Anjali Krishna, G; Francis, Shijo; Aswathy, P V; Augustine, Maria; Shanty, A A; Divya, K M; Savitha, D P; Mohanan, P V.
Afiliação
  • Dhanya TM; Department of Applied Chemistry, Cochin University of Science and Technology, Kochi 22, Kerala, India.
  • Krishnan A; Department of Chemistry, Saint Berchmans College, Changanassery, Kerala, India.
  • Anjali Krishna G; Department of Applied Chemistry, Cochin University of Science and Technology, Kochi 22, Kerala, India.
  • Francis S; Department of Applied Chemistry, Cochin University of Science and Technology, Kochi 22, Kerala, India.
  • Aswathy PV; Department of Applied Chemistry, Cochin University of Science and Technology, Kochi 22, Kerala, India.
  • Augustine M; Department of Applied Chemistry, Cochin University of Science and Technology, Kochi 22, Kerala, India; Department of Chemistry, St. Paul's College, Kalamasserry, Kerala, India.
  • Shanty AA; Department of Applied Chemistry, Cochin University of Science and Technology, Kochi 22, Kerala, India; Department of Chemistry, St Teresa's College, Kochi, Kerala, India.
  • Divya KM; Department of Applied Chemistry, Cochin University of Science and Technology, Kochi 22, Kerala, India; Department of Chemistry, NSS College, Cherthala, Kerala, India.
  • Savitha DP; Department of Applied Chemistry, Cochin University of Science and Technology, Kochi 22, Kerala, India.
  • Mohanan PV; Department of Applied Chemistry, Cochin University of Science and Technology, Kochi 22, Kerala, India. Electronic address: mohan@cusat.ac.in.
Bioorg Chem ; 136: 106525, 2023 07.
Article em En | MEDLINE | ID: mdl-37054527
ABSTRACT
A novel fluorogenic sensor N-benzo[b]thiophen-2-yl-methylene-4,5-dimethyl-benzene-1,2-diamine (BTMPD) was synthesized and characterized by using spectroscopic methods including UV-visible, FT-IR, 1H NMR, 13C NMR, and mass spectrometry. The designed fluorescent probe, owing to its remarkable properties, behaves as an efficient turn-on sensor for the sensing of amino acid Serine (Ser). Also, the strength of the probe enhances upon the addition of Ser via charge transfer, and the renowned properties of the fluorophore were duly found. The sensor BTMPD shows incredible execution potential with respect to key performance indicators such as high selectivity, sensitivity, and low detection limit. The concentration change was linear ranging from 5 × 10-8 M to 3 × 10-7 M, which is an indication of the low detection limit of 1.74 ± 0.02 nM under optimal reaction conditions. Interestingly, the Ser addition leads to an increased intensity of the probe at λ = 393 nm which other co-existing species did not. The information about the arrangement and the features of the system and the HOMO-LUMO energy levels was found out theoretically using DFT calculations which is fairly in good agreement with the experimental cyclic voltammetry results. The fluorescence sensing using the synthesized compound BTMPD reveals the practical applicability and its application in real sample analysis.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Bases de Schiff / Serina Tipo de estudo: Diagnostic_studies Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Bases de Schiff / Serina Tipo de estudo: Diagnostic_studies Idioma: En Ano de publicação: 2023 Tipo de documento: Article