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首页> 外文期刊>Inorganica Chimica Acta >Strategies for a fluorescent sensor with receptor and fluorophore designed for the recognition of heavy metal ions
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Strategies for a fluorescent sensor with receptor and fluorophore designed for the recognition of heavy metal ions

机译:具有受体和荧光团的荧光传感器的策略设计用于识别重金属离子

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摘要

The ligand DC-18-ane-N2O4 (7,16-bis(6,7-dimethoxy-1-benzopyran-2-one-4-methyl)-1,4,10,13-tetraoxa-7,16-diazacyclooctadecane) is synthesized and its fluorescence responses to the binding of a set of metal ions (Zn2+, Cd2+, Hg2+, Pb2+, Cu2+ and Ag+) are investigated. Among the metal-ligand complexes studied here, the crystal structures of [Ag(DC-18-ane-N2O4)]ClO4 center dot H2O, [Pb(DC-18-ane-N2O4)(ClO4)(2)H2O] 3 center dot 5H(2)O and [DC-18-ane-N2O4)H-2](ClO4)(2)center dot ClCH2CH2Cl are reported. Design of DC-18-ane-N2O4 as a selective turn-on sensor for heavy metal ions is based on two important factors: 1) target metal ions can be selectively complexed according to their sizes, and 2) quenching of fluorescence is related to the ability to form n contacts between the complexed metal ion and the fluorophore of the sensor. The fluorescence study shows that the size of macrocyclic 18-ane-N2O4 is too large for the Zn2+ to bind tightly, but right for Cd2+. This leads to a strong CHEF (Chelation enhanced fluorescence) effect for Cd2+, but not for Zn2+, which renders DC-18-ane-N2O4 a selective Cd2+ sensor over the ubiquitous Zn2+. In fact, it is found that Zn2+ induces fluorescence quenching, which is quite unusual as Zn2+ almost always causes a CHEF effect. For the heavier and larger metal ions tested in this work, the fluorescence intensities are found to be in line with the ability to form n contacts with the fluorophore: Cd2+ < Pb2+ < Hg2+ < Ag+ where Cd2+ exhibits a strong CHEF effect and Ag+ induces complete quenching of fluorescence. Since the coumarin fluorophore is a weak n contactor, only Ag+ shows fluorescence quenching. Therefore, our results show that two design principles tested in this work may be used to optimize the ion selectivity without interfering each other. Detailed fluorescence quenching and enhancing mechanisms for Pb2+ and Zn2+ are further discussed via density functional theory (DFT) and time-dependent DFT.
机译:配体DC-18-ANE-N2O4(7,16-双(6,7-二甲氧基-1-苯并吡喃-2-一4-甲基)-1,4,10,13-四氧化硅-7,16-二亚齐齐辛癸烷(将研究其对一组金属离子(Zn2 +,CD2 +,Hg2 +,Pb2 +,Cu2 +,Ag +)的结合的荧光反应进行研究。在这里研究的金属 - 配体络合物中,[Ag(DC-18-ANE-N2O4)] CLO4中心点H2O,[PB(DC-18-ANE-N2O4)(CLO 4)(2)H2O] 3的晶体结构3报道了中心点5H(2)O和[DC-18-ANE-N2O4)H-2](CLO 4)(2)中心点CHCH2CH2CL。作为重金属离子的选择性导通传感器的DC-18-ANE-N2O4的设计基于两个重要因素:1)靶金属离子可以根据其尺寸选择性地复合,2)荧光的猝灭有关能够在复合金属离子和传感器的荧光团之间形成n个接触。荧光研究表明,MacroCclic 18-Ane-N2O4的尺寸对于Zn2 +来说太大,但紧密结合,但是CD2 +的权利。这导致CD2 +的强厨师(螯合增强荧光)效应,但不是Zn2 +,其在普遍存在的Zn2 +上呈现DC-18-Ane-N2O4 A选择性CD2 +传感器。实际上,发现Zn2 +诱导荧光猝灭,这与Zn2 +相当不寻常,几乎总是导致厨师效应。对于在这项工作中测试的较重和更大的金属离子,发现荧光强度与荧光团形成N触点的能力:CD2 +

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