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Acetate ion augmented fluorescence sensing of Zn2+ by Salen-based probe, AIE character, and application for picric acid detection
- Das, Bhriguram;
- Dolai, Malay;
- Dhara, Anamika;
- Mabhai, Subhabrata;
- Jana, Atanu;
- 외 2명
WEB OF SCIENCE
20SCOPUS
21초록
Counter anion-triggered metal ion detection has been rarely reported by fluorimetric method. To address this challenging issue, a fluorescent probe (H2L) has been synthesized from bromo-salicylaldehyde and hydrazine hydrate, and structurally characterized by single crystal X-ray diffraction. The probe shows very weak fluorescence itself. However, its emission intensity increases in the presence of Zn2+ over other metal ions. Surprisingly, the emission profile of this probe in presence of Zn2+ is augmented only when acetate anion (OAc¯) is present as counter anion, that allows for precise quantitative analysis by spectroscopic studies. The compositions and complexation among the probe, Zn2+ ion, and OAc¯ are supported by ESI-MS, 1H-NMR, and Job's plot. Based on these studies, it is confirmed that the binding ratio between probe: metal is 1:2 and the detection limit (LOD) for the Zn2+ is 2.18 µM. The probe is capable of recognizing Zn2+ ion in the wide range of pH∼6.5-9.5, and it could be efficiently recycled by EDTA. Furthermore, the combinatorial molecular logic gate and memory device have been constructed from the fluorescent behavior of H2L with Zn2+, OAc¯, and EDTA input as based on NOT and AND gates. Interestingly, the aggregation-induced emission (AIEE) phenomenon is also perceived with greater than 50% water content in organic water mixtures, which are then useful for the detection of picric acid often used as explosive. © 2021 The Authors. Analytical Science Advances published by Wiley-VCH GmbH.
키워드
- 제목
- Acetate ion augmented fluorescence sensing of Zn2+ by Salen-based probe, AIE character, and application for picric acid detection
- 저자
- Das, Bhriguram; Dolai, Malay; Dhara, Anamika; Mabhai, Subhabrata; Jana, Atanu; Dey, Satyajit; Misra, Ajay
- 발행일
- 2021-10
- 유형
- Article
- 저널명
- Analytical Science Advances
- 권
- 2
- 호
- 9-10
- 페이지
- 447 ~ 463