An Unsymmetric Salamo-like Chemosensor for Fuorescent Recognition of Zn2

A new unsymmetric tetradentate salamo-like chemical sensor H 2 L for fluorescent recognition of Zn 2+ has been designed and synthesized. The sensor can recognize Zn 2+ from other metal ions examined with selectivity, anti-interference, reliability and high sensitivity (LOD = 1.89 × 10 −6  M) in etha...

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Veröffentlicht in:Journal of fluorescence 2020-09, Vol.30 (5), p.1049-1061
Hauptverfasser: Peng, Yun-Dong, Zhang, Yu, Jiang, Yuan-Li, Ren, Zong-Li, Wang, Fei, Wang, Li
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container_end_page 1061
container_issue 5
container_start_page 1049
container_title Journal of fluorescence
container_volume 30
creator Peng, Yun-Dong
Zhang, Yu
Jiang, Yuan-Li
Ren, Zong-Li
Wang, Fei
Wang, Li
description A new unsymmetric tetradentate salamo-like chemical sensor H 2 L for fluorescent recognition of Zn 2+ has been designed and synthesized. The sensor can recognize Zn 2+ from other metal ions examined with selectivity, anti-interference, reliability and high sensitivity (LOD = 1.89 × 10 −6  M) in ethanol/H 2 O solution. The results of UV-Vis and fluorescent spectra analyses, X-ray crystallographic study and DMol 3 simulation and calculation (on Materials Studio) indicate that the chelation-enhanced fluorescence (CHEF) recognition mechanism of the sensor H 2 L for Zn 2+ is of its hindered PET process. The sensor H 2 L for Zn 2+ has excellent fluorescence characteristics and has potential application value in biological and environmental systems.
doi_str_mv 10.1007/s10895-020-02579-y
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subjects Analytical Chemistry
Biochemistry
Biological and Medical Physics
Biomedical and Life Sciences
Biomedicine
Biophysics
Biotechnology
Chelation
Chemical sensors
Chemoreceptors
Crystallography
Ethanol
Fluorescence
Original Article
Recognition
Selectivity
Sensors
title An Unsymmetric Salamo-like Chemosensor for Fuorescent Recognition of Zn2
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