苦味酸
荧光
次氯酸盐
化学
猝灭(荧光)
光化学
分子内力
发光
检出限
核化学
爆炸物
细胞毒性
组合化学
光致发光
聚合物
生物传感器
无机化学
作者
Malavika S. Kumar,A. Das,Royston Mathias,Partha Kumbhakar,Gouri Karan,Sujata Maiti Choudhury
标识
DOI:10.1002/cptc.202600003
摘要
A dual‐mode fluorescent probe incorporating aggregation‐induced emission (AIE) activity, named 2‐((E)‐1‐(((E)‐4‐(diethylamino)‐2‐hydroxybenzylidene)hydrazineylidene)ethyl)naphthalen‐1‐ol ( DHN ), was formulated and synthesized for the selective detection of explosive picric acid (PA) and hypochlorite (OCl − ) via suppression of the excited‐state intramolecular double‐proton transfer (ESIDPT) mechanism. A significant fluorescence quenching of DHN at 535 nm was observed upon interaction with both PA and OCl − with the detection limits at 0.012 μM and 2.34 μM as well as high quenching efficiencies ( K sv ) of 3.811 × 10 4 M −1 and 1.164 × 10 4 M −1 , respectively. To elucidate the sensing behavior, various spectroscopic techniques were employed. Interestingly, DHN exhibited AIE behavior in high water content, showing a red‐shifted emission accompanied by a visible fluorescence change from whitish green to yellow. As a novel application, DHN was incorporated into a 3D‐printed polymer system, demonstrating its practical utility in detecting PA and OCl − . Further, for biological relevance, the interaction of DHN with OCl − was explored for its cytotoxicity against MCF‐7 breast cancer cells and its imaging capability in physiological media. Therefore, we believe that the present work provides a promising direction for the future development of optical‐based detection of hypochlorite and picric acid in liquid as well as solid phases.
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