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NMR、DFT 和 Zn(II)与 8-羟基喹啉-5-磺酸盐配合物的发光研究。

NMR, DFT and luminescence studies of the complexation of Zn(II) with 8-hydroxyquinoline-5-sulfonate.

机构信息

Departmento de Química, Universidade de Coimbra, Portugal.

出版信息

Dalton Trans. 2011 Nov 28;40(44):11732-41. doi: 10.1039/c1dt10978b. Epub 2011 Oct 3.

DOI:10.1039/c1dt10978b
PMID:21964543
Abstract

Multinuclear ((1)H, (13)C) magnetic resonance spectroscopy, DFT calculations and luminescence techniques have been used to study 8-hydroxyquinoline-5-sulfonate (8-HQS) and its complexes with Zn(ii), in aqueous solution. The study combines the high sensitivity of luminescence techniques, the selectivity of multinuclear NMR spectroscopy with the structural details accessible through DFT calculations, and aims to obtain a detailed understanding of the complexation between the Zn(2+) ion and 8-HQS. In addition to a complete assignment of the (1)H and (13)C NMR signals of 8-HQS, a full speciation study has been performed. Over the concentration region studied, Zn(2+) metal ion forms only one significant complex species with 8-HQS in aqueous solution in the pH range 6-8. Job's method shows that this species has a 1:2 (metal:ligand) stoichiometry. The geometry around the metal centre, according to structural optimization using DFT calculations, is suggested to be square bipyramidal, with two coordinated water molecules mutually trans, and the remaining positions occupied by the donor groups of the two coordinated 8-HQS ligands. On binding to Zn(ii), 8-HQS shows a marked fluorescence compared with the weakly-luminescent free ligand. In addition, as previously noted, there are marked changes in the absorption spectra, which support the use of 8-HQS as a sensitive fluorescent sensor to detect Zn(2+) metal ion in surface waters, biological fluids, etc. Based on results of the structural studies, suggestions are made of ways for enhancing fluorescence sensitivity.

摘要

采用多核 ((1)H、(13)C) 磁共振波谱、DFT 计算和荧光技术研究了 8-羟基喹啉-5-磺酸(8-HQS)及其与 Zn(ii)的配合物在水溶液中的情况。该研究结合了荧光技术的高灵敏度、多核 NMR 光谱的选择性以及 DFT 计算提供的结构细节,旨在深入了解 Zn(2+)离子与 8-HQS 的络合情况。除了对 8-HQS 的 (1)H 和 (13)C NMR 信号进行完整的分配外,还进行了全面的形态研究。在所研究的浓度范围内,Zn(2+)金属离子在 pH 值为 6-8 的水溶液中仅与 8-HQS 形成一种显著的配合物。根据 Job 法,该物种的化学计量比为 1:2(金属:配体)。根据 DFT 计算的结构优化,金属中心周围的几何形状被认为是四方双锥,两个配位的水分子相互反式,其余位置被两个配位的 8-HQS 配体的供体基团占据。与 Zn(ii)结合后,8-HQS 表现出明显的荧光,而游离配体的荧光则很弱。此外,如前所述,吸收光谱发生了明显的变化,这支持了 8-HQS 作为一种灵敏的荧光传感器用于检测地表水、生物体液等中的 Zn(2+)金属离子。基于结构研究的结果,提出了增强荧光灵敏度的方法。

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