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Sulphur-rich functionalized calix[4]arenes for selective complexation of Hg2+ over Cu2+, Zn2+ and Cd2+

机译:富硫的功能化杯[4]芳烃,用于Hg2 +在Cu2 +,Zn2 +和Cd2 +上的选择性络合

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摘要

[Abstract] The syntheses of two new ligands based on a calix[4]arene scaffold in the cone conformation functionalized on the phenolic positions 1 and 3 by diethylthiophosphonates (L1) or tetra(tri)thioethyleneglycol (L2) crowns are described. Together with ligand L3, the parent calix[4]arene substituted by a penta(tetra)thioethyleneglycol crown, the spectroscopic properties of the ligands were determined by means of UV-Vis absorption spectroscopy and steady-state and time-resolved fluorescence spectroscopy, showing that the ligands display modest but non-negligible intrinsic fluorescence properties (ϕfluo = 0.023; 0.026 and 0.029 for L1, L2 and L3 in CH2Cl2, respectively). The X-ray crystal structures of ligand L1, and of its synthetic precursor were determined and analyzed for their capacity to accommodate the incoming cationic species. The ligands were further investigated for their complexation properties of divalent cations such as Cu2+, Zn2+, Hg2+ and Cd2+ (under their nitrate salts) in 1:1 CH3CN/CH2Cl2 solutions (I = 0.01 M Et4NNO3, T = 25.0(2) °C), in which the additions of cations were monitored by absorption and steady-state fluorescence spectrophotometries. The stoichiometries of the corresponding complexes were assessed by ESI-MS, while insights into the structures of the complexes in solution were obtained with density functional theory (DFT) calculations. The influence of the sulphur and phenol coordinating moieties was addressed to show that the thiocrown compounds L2 and L3 displayed a marked affinity towards the soft mercuric cation (ΔlogK ≥ 2), with no particular size selectivity effect, whereas ligand L1 can accommodate both the thio and phenol units to coordinate with Cu(II). Altogether, these results point to the use of L3 as a selective fluoroionophore for detection of Hg2+.
机译:[摘要]描述了基于杯形[4]芳烃骨架的两个新配体的合成,该构架由二乙基硫代膦酸酯(L1)或四(三)硫代乙二醇(L2)冠在酚位置1和3上官能化。与配体L3,被五(四)硫代乙二醇冠取代的母杯[4]亚芳基一起,通过UV-Vis吸收光谱,稳态和时间分辨荧光光谱确定了配体的光谱性质,配体显示出适度但不可忽略的固有荧光特性(ϕfluo = 0.023; CH2Cl2中的L1,L2和L3分别为0.026和0.029)。确定并分析了配体L1及其合成前体的X射线晶体结构,并分析了它们容纳传入阳离子物种的能力。进一步研究了配体在1:1 CH3CN / CH2Cl2溶液中的二价阳离子如Cu2 +,Zn2 +,Hg2 +和Cd2 +(在其硝酸盐下)的络合特性(I = 0.01 M Et4NNO3,T = 25.0(2)°C ),其中通过吸收和稳态荧光分光光度法监测阳离子的添加​​。通过ESI-MS评估了相应配合物的化学计量,同时通过密度泛函理论(DFT)计算获得了溶液中配合物结构的见解。解决了硫和酚配位基团的影响,结果表明,硫冠化合物L2和L3对软汞阳离子具有显着的亲和力(ΔlogK≥2),没有特别的尺寸选择性作用,而配体L1可以同时容纳两个硫代和苯酚单元与Cu(II)配合。总而言之,这些结果表明使用L3作为检测Hg2 +的选择性氟离子载体。

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