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A Schiff base luminescent chemosensor for selective detection of Zn2+ in aqueous medium
被引:37
|作者:
Behura, Rubi
[1
]
Dash, Pragyan P.
[1
]
Mohanty, Patitapaban
[1
]
Behera, Sunita
[1
]
Mohanty, Monalisa
[2
]
Dinda, Rupam
[2
]
Behera, Santosh Kumar
[3
]
Barick, Aruna K.
[1
]
Jali, Bigyan R.
[1
]
机构:
[1] Veer Surendra Sai Univ Technol, Dept Chem, Sambalpur 768018, Odisha, India
[2] Natl Inst Technol, Dept Chem, Rourkela 769001, Odisha, India
[3] Inst Minerals & Mat Technol, Mat Chem Dept, CSIR, Bhubaneswar 751013, Odisha, India
关键词:
Schiff Base;
Fluorescence Chemosensor;
ESIPT;
Zn2+;
sensor;
Cell Imaging;
INTRAMOLECULAR PROTON-TRANSFER;
NITROGEN SUBSTITUTED ANALOGS;
INDUCED EMISSION ENHANCEMENT;
ON FLUORESCENT SENSOR;
ZINC;
PROBE;
RECOGNITION;
ION;
DERIVATIVES;
ZN(II);
D O I:
10.1016/j.molstruc.2022.133310
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Luminescent chemosensors based on Schiff bases have drawn tremendous research interest owing to their easy synthesis, enriched photophysical properties, and potential applications in biology and materials science. A dinitrophenyl-based Schiff base molecular probe ( L ) was synthesized and characterized to estimate its selective detection of Zn2+. The probe L exhibits weak emission in the DMSO-H2O solvent mixture due to excited-state intramolecular proton transfer (ESIPT). Interestingly, fluorescence is enhanced with the addition of Zn2+ to the DMSO-H2O solution of L, whereas the emission remains unchanged with the addition of other ions. This specifies that probe L acts as a selective chemosensor for Zn2+. The binding stoichiometry for the L : Zn2+ complex is 1:1, which was calculated using the Benesi-Hildebrand plot from fluorescence data. Furthermore, the binding modes are also supported by density functional theory (DFT) calculation. The binding constant and detection limits are 6.35 x 10(7) M-1 and 1.1 x 10(-8) M, respectively. The L-Zn2+ complex formation is reversible upon the addition of a strong chelating EDTA ligand. In addition, L is also used to detect Zn2+ in living Hela cells and selective sensing of Zn2+ in the solid phase. (c) 2022 Elsevier B.V. All rights reserved.
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