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Fluorescent sensing platform for low-cost detection of Cu2+ by coumarin derivative: DFT calculation and practical application in herbal and black tea samples.


ABSTRACT: A fluorogenic probe based on a coumarin-derivative for Cu2+ sensing in CH3CN/H2O media (v/v, 95/5, 5.0 ?M) was developed and applied in real samples. 3-(4-chlorophenyl)-6,7-dihydroxy-coumarin (MCPC) probe was obtained by synthetic methodologies and identified by spectral techniques. The probe MCPC showed remarkable changes with a "turn-off" fluorogenic sensing approach for the monitoring of Cu2+ at 456 nm under an excitation wavelength of 366 nm. The response time of the probe MCPC was founded as only 1 min. The detection limit of the probe MCPC was recorded to be 1.47 nM. The binding constant and possible stoichiometric ratio (1:1) values were determined by Benesi-Hildebrand and Job's plot systems, respectively. The mechanism of the probe MCPC with Cu2+ was further confirmed by ESI-MS and FT-IR analyses, as well as supported by theoretical calculations. Furthermore, the probe MCPC was successfully employed for the practical applications to sense Cu2+ in different herbal and black tea samples. The proposed sensing method was also verified by ICP-OES method.

SUBMITTER: Savran T 

PROVIDER: S-EPMC7751904 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Fluorescent sensing platform for low-cost detection of Cu2+ by coumarin derivative: DFT calculation and practical application in herbal and black tea samples.

Savran Tahir T   KaragÖz Abdurrahman A   Karuk Elmas Şükriye Nihan ŞN   Aydin Duygu D   Özen Furkan F   Koran Kenan K   Arslan Fatma Nur FN   GÖrgÜlÜ Ahmet Orhan AO   Yilmaz İbrahim İ  

Turkish journal of chemistry 20200818 4


A fluorogenic probe based on a coumarin-derivative for Cu<sup>2+</sup> sensing in CH<sub>3</sub>CN/H<sub>2</sub>O media (v/v, 95/5, 5.0 μM) was developed and applied in real samples. 3-(4-chlorophenyl)-6,7-dihydroxy-coumarin (MCPC) probe was obtained by synthetic methodologies and identified by spectral techniques. The probe MCPC showed remarkable changes with a "turn-off" fluorogenic sensing approach for the monitoring of Cu<sup>2+</sup> at 456 nm under an excitation wavelength of 366 nm. The r  ...[more]

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