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Variable behaviour of flexible N,O-mixed pyrazole ligand towards Zn(ii), Cd(ii) and Hg(ii) ions. Synthesis, crystal structure and fluorescent properties

机译:柔性N,O混合吡唑配体对Zn(ii),Cd(ii)和Hg(ii)离子的可变行为。合成,晶体结构和荧光性质

摘要

The variable coordination behaviour of the mixed ligand 1-(2-hydroxyethyl)-3,5-dimethylpyrazole (L) towards Zn(ii), Cd(ii) and Hg(ii) ions has been investigated. Three new complexes, [ZnCl2(L)] (1), [CdCl2(L)]2 (2), and [HgCl2(L)]n (3), with different structures and topologies have been fully characterized by analytical and spectroscopic techniques including heteronuclear 113Cd and 199Hg NMR analyses. Complexes 1-3 were also characterized by single crystal and powder X-ray diffraction techniques. The L ligand exhibits high versatility and provides different environments to the metal centre as a function of its diverse coordination mode. The weak π-π stacking interactions and intermolecular hydrogen bonds resulted in the two-dimensional network structures. All these results point out the structural diversity of the hybrid pyrazole ligand on its coordination. Finally, we determined the fluorescent properties of complexes 1-3. Surprisingly, L displays a high selectivity for Hg(ii) ion. The findings indicate that the variable behaviour of the hydroxyl group substituent exerts an important effect on the spectroscopic properties. Moreover, the fluorescence of these complexes has been rationalized through theoretical calculations. The primary results suggest that the use of L is a promising strategy to synthesize novel materials with unique photoluminescent properties and further applications for the detection of heavy metals in real environmental samples. © 2011 The Royal Society of Chemistry.
机译:研究了混合配体1-(2-羟乙基)-3,5-二甲基吡唑(L)对Zn(ii),Cd(ii)和Hg(ii)离子的可变配位行为。通过分析和光谱已充分表征了具有不同结构和拓扑结构的三种新配合物[ZnCl2(L)](1),[CdCl2(L)] 2(2)和[HgCl2(L)] n(3)。包括杂核113Cd和199Hg NMR分析的技术。配合物1-3也通过单晶和粉末X射线衍射技术表征。 L配体表现出高通用性,并根据其不同的配位方式为金属中心提供不同的环境。弱的π-π堆积相互作用和分子间氢键导致二维网络结构。所有这些结果指出杂化吡唑配体在其配位上的结构多样性。最后,我们确定了配合物1-3的荧光性质。出人意料的是,L对Hg(ii)离子具有很高的选择性。这些发现表明羟基取代基的可变行为对光谱性质具有重要影响。此外,通过理论计算已经合理化了这些配合物的荧光。初步结果表明,使用L是合成具有独特光致发光特性的新型材料的有前途的策略,并在实际环境样品中重金属的检测中具有进一步的应用。 ©2011皇家化学学会。

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