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Synthesis of Fluorophore Based Functional Material for Selective Detection of Al3+ Ion in Water and Decoding the AIEE Property of Its Hydrosol
被引:0
|作者:
Giri, Prabhat Kumar
[1
]
Samanta, Shashanka Shekhar
[1
]
Mudi, Naren
[1
]
Mandal, Usha
[1
]
Misra, Ajay
[1
]
机构:
[1] Vidyasagar Univ, Dept Chem, Midnapore 721102, West Bengal, India
关键词:
Al (III) Sensor;
Fluorescence;
AIEE;
DLS;
TCSPC;
AGGREGATION-INDUCED EMISSION;
ON FLUOROGENIC CHEMOSENSOR;
FLUORESCENT CHEMOSENSOR;
ALUMINUM;
TOXICITY;
DESIGN;
D O I:
10.1007/s10895-023-03238-8
中图分类号:
Q5 [生物化学];
学科分类号:
071010 ;
081704 ;
摘要:
A designed aggregation-induced emission enhancement (AIEE) active fluorescence probe 2,3-Bis-[(2-hydroxy-napthalen-1-ylmethylene)-amino]-but-2-enedinitrile (L) was synthesized via one step condensation method. The probe shows swift sensitivity and selectivity toward Al(3+)over other relevant metal ions and also exhibits significant AIEE phenomena in methanol/water mixture. Significant enhancement of fluorescence intensity is triggered via chelation-enhanced fluorescence through complex (Al3+-L) formation. A 2:1 metal to ligand ratio is observed from Job's plot based on UV - Vis absorption titration and detection limit (LOD) is found as low as 31.14 nM. Moreover, 1H NMR titrations and fluorescence reversibility by adding Al3+ and EDTA sequentially had been performed to establish the binding site of sensor complex (Al3+-L). Time-resolved photoluminescence, dynamic light scattering, optical microscopy, and on-site visualization studies have been performed to understand the AIEE mechanism of L in different volume percentage of water and methanol mixture. An INHIBIT molecular logic gate has been constructed utilizing the fluorescence behavior of the probe, L in presence of Al3+ and strong chelating ligand EDTA.
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页码:2131 / 2144
页数:14
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