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A New 3D 10-Connected Cd(II) Based MOF With Mixed Ligands: A Dual Photoluminescent Sensor for Nitroaroamatics and Ferric Ion

机译:具有混合配体的新型基于3D 10连接Cd(II)的MOF:用于硝基芳香族化合物和铁离子的双光致发光传感器

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摘要

The precise unification of functional groups and photoluminescence properties can give rise to MOFs that can offer diverse applications like selective detection of nitroaromatic compounds (NACs) which are considered to be an important ingredient of explosive as well as cation and anion sensing. Hence, a new 3D metal-organic framework (MOF) [Cd2(btc)(bib)(HCOO)(H2O)·H2O]n (1) has been synthesized using mixed ligand strategy by solvothermal reaction of cadmium acetate with two ligands viz. 1,3,5-benzenetricarboxylic acid (H3btc) and 1,4-bis(2-methyl-imidazol-1-yl)butane (bib). The MOF 1 possesses highly 10-connected network which is based on {Cd4(btc)2(bib)4} molecular building block. The studies showed that 1 could be taken as the fluorescent sensor for sensitive recognition of NACs, in particular 2,4,6-trinitrophenol (TNP) with notable quenching (Ksv = 5.42 × 104 M−1) and LOD of 1.77 ppm. Additionally, 1 also displayed selective sensing for Fe3+ ions with Ksv = 6.05 × 103 M− 1 and LOD = 1.56 ppm. Also, this dual sensor displayed excellent reusability toward the detection of TNP and Fe3+ ion. Theoretical calculations have been performed to propose the probable mechanism for the sensing luminescence intensity. Calculations indicated that because of the charge transfer and weak interaction that is operating between NACs and MOF, the weakening in the photoluminescence intensity resulted.
机译:官能团和光致发光特性的精确统一可以产生MOF,这些MOF可以提供多种应用,例如选择性检测硝基芳族化合物(NAC),这被认为是炸药以及阳离子和阴离子感测的重要成分。因此,通过溶剂热反应采用混合配体策略合成了一种新的3D金属有机骨架(MOF)[Cd2(btc)(bib)(HCOO)(H2O)·H2O] n( 1 )具有两个配体的乙酸镉的混合物。 1,3,5-苯三羧酸(H3btc)和1,4-双(2-甲基-咪唑-1-基)丁烷(围嘴)。 MOF 1 具有高度连接的10个网络,该网络基于{Cd4(btc)2(bib)4}分子构件。研究表明, 1 可用作敏感识别NAC的荧光传感器,尤其是2,4,6-三硝基苯酚(TNP)具有明显的猝灭作用(Ksv = 5.42×10 4 M −1 )和LOD为1.77 ppm。此外, 1 还显示了Ksv = 6.05×10 3 M −1 的Fe 3 + 离子的选择性感测。 LOD = 1.56 ppm。而且,这种双传感器在检测TNP和Fe 3 + 离子方面显示出极好的可重复使用性。已经进行了理论计算以提出用于感测发光强度的可能机制。计算表明,由于NAC与MOF之间存在电荷转移和弱相互作用,导致光致发光强度减弱。

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