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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Highly selective sensing of Fe3+ by an anionic metal-organic framework containing uncoordinated nitrogen and carboxylate oxygen sites
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Highly selective sensing of Fe3+ by an anionic metal-organic framework containing uncoordinated nitrogen and carboxylate oxygen sites

机译:通过含有未加入的氮和羧酸氧氧源的阴离子金属 - 有机骨架的Fe3 +对Fe3 +的高度选择性感测

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Fast and highly selective detection of trace amounts of metal ions has become one of the most urgent issues concerning public security and living systems. However, developing a highly efficient fluorescent sensor for metal ions still remains a great challenge. Metal-organic frameworks (MOFs) are a promising class of porous fluorescent sensors towards ion detection. Herein, the anionic MOF FJI-C8 based on the p-conjugated aromatic ligand H(6)TDPAT (2,4,6-tris(3,5-dicarboxylphenylamino)-1,3,5-triazine) containing uncoordinated nitrogen and carboxylate oxygen atoms was chosen as highly efficient sensor for selective detection of Fe3+. Due to the strong interaction between Fe3+ and Lewis base sites (uncoordinated nitrogen and carboxylate oxygen atoms), the high overlap between the emission spectrum of the anionic FJI-C8 and the absorption spectrum of Fe3+, and the good overlap of the excitation spectrum of the host material FJI-C8 with the absorption spectrum of Fe3+, FJI-C8 exhibited a high sensitivity (0.0233 mM of Fe3+) and extra selectivity (K-sv = 8245 M-1) for the rapid detection (less than 30 s) of Fe3+ with low usage (0.04 mg mL(-1) of FJI-C8 suspension). To the best of our knowledge, this is the first example of a luminescent MOF chemosensor based on a trefoil ligand with the highest density of uncoordinated N and carboxylate O atoms for the highly selective detection of Fe3+. It is also crucial to note that this is a first time detection of Fe3+ using both FJI-C8 suspension and solid after filtration, and the results indicate that the detection of Fe3+ using the FJI-C8 suspension is better. This study will pave the way for designing luminescent MOF chemosensors for the detection of Fe3+ ion.
机译:快速且高度选择性地检测痕量的金属离子已成为公共安全和生活系统最紧迫的问题之一。然而,开发用于金属离子的高效荧光传感器仍然是一个巨大的挑战。金属 - 有机框架(MOF)是一类朝向离子检测的多孔荧光传感器等级。在此,基于P缀合的芳族配体H(6)TDPAT的阴离子MOF FJI-C8(2,4,6-三甲基氨基)-1,3,5-三嗪)含有未使用的氮和羧酸盐选择氧原子作为高效传感器,用于选择性检测Fe3 +。由于Fe3 +和Lewis基因位点(未加入的氮气和羧酸氧原子)之间的强相互作用,阴离子FJI-C8的发射光谱与Fe3 +的吸收光谱之间的高重叠,以及良好的激发光谱重叠宿主材料FJI-C8具有Fe3 +的吸收光谱,FJI-C8表现出高灵敏度(Fe3 + Fe3 +)和额外选择性(K-SV = 8245 m-1),用于快速检测(少于30秒)Fe3 +使用低使用率(0.04mg ml(-1)的FJI-C8悬浮液)。据我们所知,这是基于具有最高密度的N和羧酸盐O原子的三叶草配体的发光MOF化学传感器的第一个例子,用于高选择性检测Fe3 +。值得注意的是,在过滤后,这是使用FJI-C8悬浮液和固体的第一次检测Fe3 +,结果表明使用FJI-C8悬浮液检测Fe3 +更好。该研究将为设计Fe3 +离子的亮度MOF化学传感器进行设计。

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