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两种作为荧光探针用于检测硝基苯、四环素、氟唑菌酰胺的三维配位聚合物及其在青椒中的应用。

Two three-dimensional coordination polymers as fluorescence probes for the detection of nitrobenzene, tetracycline, fluazinam and their application in green pepper.

作者信息

Dong Lu-Lu, Yang Hua, Sun Xue-Hua, Fu Yu-Pei, Liu Hong-Li, Zhang Wei-Ku, Chen Xiao-Li, Cui Hua-Li, Liu Lin, Wang Ji-Jiang

机构信息

School of Chemistry and Chemical Engineering, Shaanxi Key Laboratory of Chemical Reaction Engineering, Laboratory of New Energy & New Function Materials, Yanan University, Yan'an, Shaanxi 716000, China.

School of Chemistry and Chemical Engineering, Shaanxi Key Laboratory of Chemical Reaction Engineering, Laboratory of New Energy & New Function Materials, Yanan University, Yan'an, Shaanxi 716000, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 5;324:124934. doi: 10.1016/j.saa.2024.124934. Epub 2024 Aug 12.

Abstract

Two coordination polymers (CPs), Zn(L)(phen) and Cd(HL)(2,2-bpy)(HO), were synthesized by using 2',3,3',5,5'-Diphenyl ether pentacarboxylic acid (HL), phenanthroline (phen), and 2,2'-bipyridine (2,2'-bpy) under hydrothermal conditions. The L ligand adopts the μ-к: к: к: к: к: к mode in 1 and the μ-к: к: к: к: к mode in 2. Sensing experiments show that 1 and 2 are fluorescence probes with high sensitivity and rapid detection of nitro explosives, antibiotics, and pesticides. In order to verify the ability of 2 to detect FLU in actual samples, we performed a spiked recovery experiment in green pepper water. The spiked recoveries were 97.77-101.18 %. Interestingly, because HL is not completely deprotonated in 2, there is abundant hydrogen bonding, which makes the fluorescence quenching rate higher and the detection limit lower. The possible fluorescence quenching mechanism of 1 and 2 can be explained by their UV-VIS absorption spectra and orbital energy levels.

摘要

通过水热条件下使用2',3,3',5,5'-二苯醚五羧酸(HL)、邻菲罗啉(phen)和2,2'-联吡啶(2,2'-bpy)合成了两种配位聚合物(CPs),即[Zn(L)(phen)](1)和[Cd(HL)(2,2-bpy)(H₂O)](2)。L配体在1中采用μ-κ:κ:κ:κ:κ:κ模式,在2中采用μ-κ:κ:κ:κ:κ模式。传感实验表明,1和2是对硝基炸药、抗生素和农药具有高灵敏度和快速检测能力的荧光探针。为了验证2在实际样品中检测氟喹诺酮(FLU)的能力,我们在青椒水体系中进行了加标回收实验。加标回收率为97.77 - 101.18%。有趣的是,由于HL在2中没有完全去质子化,存在丰富的氢键,这使得荧光猝灭速率更高,检测限更低。1和2可能的荧光猝灭机制可以通过它们的紫外可见吸收光谱和轨道能级来解释。

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