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通过第二配位球,在一个简单的五氟苯基取代的吡啶基-脲的 Cu(II)辅助 1D 聚合物中对硫酸盐进行选择性识别。

Selective recognition of sulphate in a Cu(II) assisted 1D polymer of a simple pentafluorophenyl substituted pyridyl-urea via second sphere coordination.

机构信息

Department of Inorganic Chemistry, Indian Association for the Cultivation of Science, 2A & 2B Raja S C Mullick Road, Jadavpur, Kolkata-700032, India.

出版信息

Dalton Trans. 2013 Apr 28;42(16):5818-25. doi: 10.1039/c3dt32710h.

DOI:10.1039/c3dt32710h
PMID:23455151
Abstract

A pentafluorophenyl (–C6F5) substituted 3-pyridyl urea, L(1), is explored extensively to demonstrate SO4(2-) binding exclusively via second sphere coordination in the cavity of a 1D polymeric self-assembly of L(1), selectively assisted by Cu2+. A single crystal X-ray diffraction study depicts SO4(2-) encapsulation in the C2 symmetric cleft via nine hydrogen bonding interactions contributed by eight urea protons of four L(1) moieties in [CuL(1)4(DMF)2]SO4 (1). To revalidate the importance of Cu2+ selective anion coordination via exclusive second sphere coordination, a complex of L(1) and Cu(NO3)2, i.e. CuL(1)4(H2O)22 (2), is also isolated and characterized by a single crystal X-ray diffraction study. When SO4(2-) salts of different metal ions such as Co2+/Ni2+ are employed, the first sphere coordination of SO4(2-) is observed in cases of complexes [CoL(1)3(DMF)2SO4] (3) and [NiL(1)3(DMF)2SO4] (4) respectively. These results clearly suggest the importance of Cu2+ towards anion recognition via purely second sphere coordination in the case of complexes 1 and 2. To understand the importance of (–C6F5) substitution in the design of L(1) towards such recognition of SO4(2-) in 1, the phenyl (–C6H5) analogue of L(1), i.e.L(2), is allowed to complex with the SO4(2-) salt of Cu2+. Interestingly, L(2) shows first sphere SO4(2-) coordination in the complex [CuL(2)2(DMF)(H2O)2SO4] (5). Solution state UV-Vis experiments of L(1) with various copper salts such as Cu(ClO4)2, CuSO4, Cu(NO3)2, CuCl2 and CuBr2 in DMF show the formation of a binary complex corresponding to 1. Further, Cu(2+) selective second sphere coordination of SO4(2-) in solution is also demonstrated by UV-Vis studies of complexes isolated from the mixtures of various Cu(2+) salts and/or SO4(2-) salts of different metal ions.

摘要

一种五氟苯基(-C6F5)取代的 3-吡啶基脲 L(1) 被广泛探索,以证明在 L(1) 的一维聚合自组装空腔中,SO4(2-) 仅通过第二配位层进行专一地结合,这一过程选择性地由 Cu2+辅助。单晶 X 射线衍射研究描述了 SO4(2-) 通过来自四个 L(1)部分的八个脲质子的九个氢键相互作用在 C2 对称裂缝中包封,在 [CuL(1)4(DMF)2]SO4(1)中。为了重新验证 Cu2+通过专属的第二配位层选择性阴离子配位的重要性,还分离并通过单晶 X 射线衍射研究了 L(1) 和 Cu(NO3)2 的配合物 CuL(1)4(H2O)22(2)。当使用不同金属离子(如 Co2+/Ni2+)的 SO4(2-)盐时,在配合物 [CoL(1)3(DMF)2SO4](3)和 [NiL(1)3(DMF)2SO4](4)中观察到 SO4(2-)的第一配位层配位。这些结果清楚地表明,在配合物 1 和 2 中,Cu2+对阴离子识别的重要性在于通过纯粹的第二配位层配位。为了理解 L(1)中(-C6F5)取代在这种 SO4(2-)识别中的重要性,允许 L(1)的苯基(-C6H5)类似物 L(2)与 Cu2+的 SO4(2-)盐络合。有趣的是,L(2)在配合物 [CuL(2)2(DMF)(H2O)2SO4](5)中显示出第一配位层 SO4(2-)配位。在 DMF 中,L(1)与各种铜盐(如 Cu(ClO4)2、CuSO4、Cu(NO3)2、CuCl2 和 CuBr2)的溶液状态 UV-Vis 实验显示形成对应于 1 的二元配合物。此外,通过对来自各种 Cu(2+)盐和/或不同金属离子的 SO4(2-)盐混合物的配合物的 UV-Vis 研究,还证明了 SO4(2-)在溶液中的 Cu(2+)选择性第二配位层配位。

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