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用于铝、铬和铁的灵敏荧光探针:在实际水样及逻辑门中的应用

Sensitive Fluorescent Probe for Al, Cr and Fe: Application in Real Water Samples and Logic Gate.

作者信息

Lin Ziyun, Shi Yu, Song Yanxi, Yan Jiabao, Li Hongqi, Xie Chengxiao

机构信息

College of Chemistry and Chemical Engineering, Donghua University, Shanghai, 201620, China.

College of Environmental Science and Engineering, Donghua University, Shanghai, 201620, China.

出版信息

J Fluoresc. 2025 Jan 11. doi: 10.1007/s10895-024-04130-9.

Abstract

Construction of single probes for simultaneous detection of common trivalent metal ions has attracted much attention due to higher efficiency in analysis and cost. A naphthalimide-based fluorescent probe K1 was synthesized for selective detection of Al, Cr and Fe ions. Fluorescence emission intensity at 534 nm of probe K1 in DMSO/HO (9:1, v/v) was significantly enhanced upon addition of Al, Cr and Fe ions while addition of other metal ions (Li, Na, K, Ag, Cu, Fe, Zn, Co, Ni, Mn, Sr, Hg, Ca, Mg, Ce, Bi and Au) did not bring about substantial change in fluorescence emission. The calculated detection limits were 0.32 µM, 0.81 µM, and 0.27 µM for Al, Cr, and Fe, respectively. Probe K1 displayed strong anti-interference ability, a large Stokes shift, rapid response, and applicability in a wide pH range for the simultaneous detection of Al, Cr and Fe in real water samples. Job's plot test showed that the stoichiometric ratio of the complexes formed between probe K1 and the trivalent metal ions was 1:1. The reversible application of probe K1 was realized by addition of NaEDTA. A molecular logic gate was built based on the input-output information. This approach may provide a basis for highly selective and sensitive detection of common trivalent cations and for design of memory devices.

摘要

由于分析效率更高且成本较低,用于同时检测常见三价金属离子的单探针构建备受关注。合成了一种基于萘二甲酰亚胺的荧光探针K1,用于选择性检测铝、铬和铁离子。在DMSO/H₂O(9:1,v/v)中,加入铝、铬和铁离子后,探针K1在534 nm处的荧光发射强度显著增强,而加入其他金属离子(锂、钠、钾、银、铜、铁、锌、钴、镍、锰、锶、汞、钙、镁、铈、铋和金)并未使荧光发射发生实质性变化。铝、铬和铁的计算检测限分别为0.32 μM、0.81 μM和0.27 μM。探针K1具有很强的抗干扰能力、大斯托克斯位移、快速响应以及在宽pH范围内适用于实际水样中铝、铬和铁的同时检测。Job曲线测试表明,探针K1与三价金属离子形成的配合物的化学计量比为1:1。通过加入NaEDTA实现了探针K1的可逆应用。基于输入-输出信息构建了一个分子逻辑门。这种方法可为常见三价阳离子的高选择性和灵敏检测以及存储器件的设计提供依据。

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