苦味酸
化学
荧光
猝灭(荧光)
光化学
选择性
金属有机骨架
硝基
组合化学
肉眼
发光
吸附
检出限
分析物
无机化学
有机化学
物理化学
色谱法
光电子学
烷基
物理
量子力学
催化作用
作者
Li Yang,Momang Tian,Jian Qin,Yuewen Lu,Yu Qian,Ji‐Min Han
标识
DOI:10.1002/ejic.202300089
摘要
Abstract The strong explosiveness, toxicity and environmental pollution of picric acid make its sensitive detection important. Recently, LMOF materials are showing great potential toward efficient detection of PA. However, hindered by the weak connections between LMOFs and analytes, a feasible fluorescence selectivity and sensitivity to desired compounds by constructed LMOFs remain challenging. Herein, we propose a new strategy by using the innate adsorption ability of MOFs. We choose NDC−Zn, a highly stable LMOF with unique pore structures. The topology of ligands can capture PAs specifically inside the pores and the selectivities are further elevated. PET effects are boosted due to longer and closer contact between ligands and trapped PAs, thus higher sensitivity is also achieved. Besides, a fluorescence enhancement at a visible wavelength was found as the concentration of PA increased, suggesting a potential application of naked‐eye recognition for PA. NDC−Zn exhibited an outstanding detection sensitivity for PA with a quenching constant of 49657 M −1 , as well as distinctive fluorescence quenching among 9 nitro explosives. From DFT calculations, the fluorescence quenching mechanisms such as PET and the complexation between H 2 NDC and PA were supported.
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