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超分子发光镧系元素二聚体用于氟离子螯合和传感。

Supramolecular luminescent lanthanide dimers for fluoride sequestering and sensing.

机构信息

LIMAA, IPHC, UMR 7178 CNRS, Université de Strasbourg, ECPM, 25 rue Becquerel, 67087 Strasbourg Cedex (France).

出版信息

Angew Chem Int Ed Engl. 2014 Jul 7;53(28):7259-63. doi: 10.1002/anie.201404847. Epub 2014 Jun 6.

Abstract

Lanthanide complexes (Ln=Eu, Tb, and Yb) that are based on a C2 -symmetric cyclen scaffold were prepared and characterized. The addition of fluoride anions to aqueous solutions of the complexes resulted in the formation of dinuclear supramolecular compounds in which the anion is confined into the cavity that is formed by the two complexes. The supramolecular assembly process was monitored by UV/Vis absorption, luminescence, and NMR spectroscopy and high-resolution mass spectrometry. The X-ray crystal structure of the europium dimer revealed that the architecture of the scaffold is stabilized by synergistic effects of the EuFEu bridging motive, π stacking interactions, and a four-component hydrogen-bonding network, which control the assembly of the two [EuL] entities around the fluoride ion. The strong association in water allowed for the luminescence sensing of fluoride down to a detection limit of 24 nM.

摘要

基于 C2 对称的 cyclen 支架的镧系元素配合物(Ln=Eu、Tb 和 Yb)被制备并进行了表征。向配合物的水溶液中加入氟阴离子会导致形成二核超分子化合物,其中阴离子被限制在由两个配合物形成的空腔内。超分子组装过程通过 UV/Vis 吸收、发光和 NMR 光谱以及高分辨率质谱进行监测。Eu 二聚体的 X 射线晶体结构表明,支架的结构通过 EuFEu 桥接动机、π 堆积相互作用和四组分氢键网络的协同作用得到稳定,这些相互作用控制着两个 [EuL]实体围绕氟离子的组装。在水中的强缔合允许对氟离子进行荧光传感,检测限低至 24 nM。

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