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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Time-Resolved Terbium-Based Probe for the Detection of Zinc(II) Ions: Investigation of the Formation of a Luminescent Ternary Complex
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Time-Resolved Terbium-Based Probe for the Detection of Zinc(II) Ions: Investigation of the Formation of a Luminescent Ternary Complex

机译:用于检测锌(II)离子的时间分辨的铽探针:对发光三元复合络合物形成的研究

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摘要

Because of their unique photochemical and photophysical properties, luminescent lanthanide-based complexes have long captivated chemists. In recent years, the number of reports of luminescent lanthanide complex-based probes for monitoring of biological and environmental processes has dramatically increased, namely, because of their selectivity for particular analytes, lower limits of detection, and the fact that they allow monitoring of analytes in real time. Lanthanide-based probes need to be paired with an appropriate antenna/sensitizer to allow maximum energy transfer, with the antenna typically covalently attached to the stable lanthanide chelate. We have recently investigated "dark" lanthanide-based probes where the sensitizer is not covalently linked to the lanthanide chelate. Herein we report the use of a luminescent lanthanide-based probe system for the detection of Zn2+ ions based on the formation of a ternary complex between a "dark" terbium complex, lumazine, and Zn2+. The terbium(III)-based probe incorporates a 1,4,7,10-tetraazacyclododecane1,4,7,10-triacetic acid macrocyclic chelator covalently attached to a cyclen moiety, which is the Zn2+ ion binding group. In the presence of Zn2+ ions and lumazine (a strongly UV-absorbing sensitizer), a 1:1:1 ternary complex forms. The resulting complex is highly luminescent and selective for Zn2+ ions over other cations of environmental significance. Furthermore, with a limit of detection of 1.2 mu M, this probe can detect the level of chronic zinc(II) concentrations denoted by the U.S. Environmental Protection Agency.
机译:由于它们独特的光化学和光物理性质,发光的镧系元素的复合物具有长期迷人的化学家。近年来,对生物和环境过程的监测发光镧系元素复合探针的报告数量显着增加,即,由于它们对特定分析物的选择性,降低了检测限,以及它们允许监测分析物的事实实时。基于镧系元素的探针需要与适当的天线/敏化剂配对以允许最大能量转移,并且天线通常与稳定的镧系元素螯合物共价连接。我们最近研究了“暗”的基于镧系元素的探针,其中敏化剂与镧系元素螯合物不共价连接。在此,我们报告使用发光镧系元素的探针系统,用于基于“暗”铽络合物,醇碱和Zn2 +之间的三元复合物的形成来检测Zn2 +离子。基于铽(III)的探针包括1,4,7,10-四氮杂琥珀烷1,4,7,10-三酰亚乙酰丙烷螯合剂,其共价连接到环卷部分,其是Zn2 +离子结合基团。在Zn2 +离子和醇碱(强紫外线吸收敏化剂)的存在下,1:1:1三元复合形式。所得复合物是高度发光的,在环境意义的其他阳离子上为Zn2 +离子选择性。此外,由于1.2μm的检测限,该探针可以检测由美国环境保护局表示的慢性锌(II)浓度的水平。

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