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基于锆的金属有机框架材料的光动力学:爆炸性硝基芳烃的影响

Photodynamics of Zr-based MOFs: effect of explosive nitroaromatics.

作者信息

Gutiérrez M, Navarro R, Sánchez F, Douhal A

机构信息

Departamento de Química Física, Facultad de Ciencias Ambientales y Bioquímica, and INAMOL, Universidad de Castilla-La Mancha, Avenida Carlos III, S.N., 45071 Toledo, Spain.

出版信息

Phys Chem Chem Phys. 2017 Jun 28;19(25):16337-16347. doi: 10.1039/c7cp02590d.

Abstract

The present work describes the spectroscopic and photodynamics of two different Zr mixed-linkers MOFs (Zr-NDC/Tz and Zr-NDC/CN) and their interaction with nitroaromatics. Both MOFs exhibit comparable spectroscopic behaviours, with a broad emission band mainly due to the naphthalene excimers within their three-dimensional structure. Flash photolysis experiments show a slow radiative electron-hole (e-h) recombination, reflected as a large negative absorption band. The interaction with the selected nitroaromatic compounds produces a static fluorescence quenching of Zr-NDC/Tz. Interestingly, the addition of trinitrophenol (TNP) induces the formation of a charge-transfer complex, helped by intermolecular H-bonds formation, as shown by the steady-state and ps-time-resolved emission experiments. Remarkably, the (e-h) recombination is strongly affected due to the inhibition of the ligand-to-cluster charge transfer process within the MOF. The quenching constants for the nitroaromatics lacking -OH groups are in the order of 10 M, while it is two orders of magnitude higher for the TNP (1.8 × 10 M). Both MOFs are highly selective toward TNP. We also demonstrate the possibility to recycle these MOFs without significant loses in their ability to detect TNP. Our findings give the clues to understand the fluorescence quenching mechanism of new Zr-based MOFs in presence of explosive-like molecules, opening the way to improve these nanomaterials as highly selective sensor of nitroaromatics.

摘要

本工作描述了两种不同的锆混合连接体金属有机框架材料(Zr-NDC/Tz和Zr-NDC/CN)的光谱学和光动力学及其与硝基芳烃的相互作用。两种金属有机框架材料均表现出可比的光谱行为,其三维结构内主要由于萘准分子而呈现出一个宽发射带。闪光光解实验表明存在缓慢的辐射性电子-空穴(e-h)复合,表现为一个大的负吸收带。与所选硝基芳烃化合物的相互作用导致Zr-NDC/Tz发生静态荧光猝灭。有趣的是,如稳态和皮秒时间分辨发射实验所示,三硝基苯酚(TNP)的加入因分子间氢键的形成而诱导形成了一个电荷转移络合物。值得注意的是,由于金属有机框架内配体到簇的电荷转移过程受到抑制,(e-h)复合受到强烈影响。对于不含-OH基团的硝基芳烃,猝灭常数约为10 M,而TNP的猝灭常数则高两个数量级(1.8×10 M)。两种金属有机框架材料对TNP都具有高度选择性。我们还证明了这些金属有机框架材料能够循环使用,且在检测TNP的能力方面不会有显著损失。我们的研究结果为理解新型锆基金属有机框架材料在类似爆炸物分子存在下的荧光猝灭机制提供了线索,为将这些纳米材料改进为高选择性硝基芳烃传感器开辟了道路。

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