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https://dspace.iiti.ac.in/handle/123456789/9837
Title: | Thiazolothiazole based donor-π-acceptor fluorophore: Protonation/deprotonation triggered molecular switch, sensing and bio-imaging applications |
Authors: | Kaur, Navpreet Mobin, Shaikh M. |
Keywords: | Charge transfer|Electronic properties|Fluorescence imaging|Lanthanum compounds|Mercury (metal)|Mercury compounds|Modulation|Protonation|Pyridine|Bio-imaging|Donor-π-acceptor|Emission switching|Mercury-sensing|Molecular switches|Protonations|Sensitivity of the probe|TFA and mercury sensing|Thiazolothiazole|π-acceptors|Probes|2 (pyren 1 yl) 5 (pyridin 4 yl)thiazolo[5,4 d]thiazole|cation|mercury|proton|pyridine|thiazole derivative|trifluoroacetic acid|unclassified drug|A-375 cell line|absorption|acid base balance|Article|bioimaging|calculation|cell membrane permeability|controlled study|cross linking|fluorescence|HeLa cell line|human|human cell|IC50|imaging|intramolecular charge transfer|limit of detection|luminescence|molecular dynamics|molecular mechanics|molecular probe|molecular sensing|molecular switching|protonation and deprotonation|sensitivity analysis|synthesis|ultraviolet radiation |
Issue Date: | 2022 |
Publisher: | Elsevier B.V. |
Citation: | Kumar, V., Sony, S., Kaur, N., Mobin, S. M., Kaur, P., & Singh, K. (2022). Thiazolothiazole based donor-π-acceptor fluorophore: Protonation/deprotonation triggered molecular switch, sensing and bio-imaging applications. Analytica Chimica Acta, 1206 doi:10.1016/j.aca.2022.339776 |
Abstract: | Stimuli modulated photophysical properties of a new asymmetric multifunctional molecular probe, 2-(pyren-1-yl)-5-(pyridin-4-yl)thiazolo [5,4-d]thiazole (PYTZ-P) bearing electron-rich pyrene and electron-deficient pyridine units linked through a π-conjugated thiazolo [5,4-d]thiazole (TTz) bridge are reported. Its sensitivity towards protons (TFA) in solution is manifested in the form of bathochromically shifted emission that spreads all over the visible region, and is related to the increased acceptor strength of pyridine upon protonation and subsequent enhanced magnitude of intramolecular charge-transfer in the probe. Similar modulation of the luminescence behaviour of the probe was also observed in the solid state. These observations are well rationalised by the theoretical calculations. The applicability of the sensitivity of the probe towards TFA has been demonstrated by developing the ready-to-use portable paper strips. Furthermore, PYTZ-P showed different acid/base induced absorption/emission switching property. Interestingly, when the response of the probe was noted in the presence of several cations, modulation of the electronic properties was observed only in the presence of Hg2+ ions, with the lowest detection limit of 8.43 × 10−8 M. Additionally, the sensitivity of the probe towards TFA and Hg2+ ions in solution and solid states is convincingly mimicked in the fluorescence imaging of HeLa and A375 cancer cells. © 2022 Elsevier B.V. |
URI: | https://dspace.iiti.ac.in/handle/123456789/9837 https://doi.org/10.1016/j.aca.2022.339776 |
ISSN: | 0003-2670 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Biosciences and Biomedical Engineering |
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