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首页> 外文期刊>RSC Advances >A series of lanthanide complexes with different N-donor ligands: synthesis, structures, thermal properties and luminescence behaviors
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A series of lanthanide complexes with different N-donor ligands: synthesis, structures, thermal properties and luminescence behaviors

机译:一系列具有不同N-供体配体的镧系元素复合物:合成,结构,热性能和发光行为

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Four novel lanthanide complexes, [Ln(2,4-DClBA) _(3) (terpy)(H _(2) O)]·H _(2) O (Ln = Eu(1), Tb(2)); [Ln(2,4-DClBA) _(3) (5,5′-DM-2,2′-bipy)(C _(2) H _(5) OH)] _(2) (Ln = Eu(3), Tb(4); 2,4-DClBA: 2,4-dichlorobenzoate; terpy: 2,2′:6′,2′′-terpyridine; 5,5′-DM-2,2′-bipy: 5,5′-dimethyl-2,2′-bipyridine) have been synthesized via a conventional solution method at room temperature and structurally characterized by single crystal and powder X-ray diffraction. Complexes 1–2 exhibit mononuclear lanthanide architectures and each Ln ~(3+) ion is nine-coordinated adopting a distorted monocapped square antiprismatic molecular geometry, while complexes 3–4 exhibit binuclear lanthanide architectures in which each Ln ~(3+) ion is eight-coordinated adopting a distorted square antiprismatic molecular geometry. Mononuclear complexes 1–2 are stitched together via Cl–π and hydrogen bonding interactions to form the 1D, 2D, 3D supramolecular structures. While complexes 3–4 are packed together through Cl–Cl, π–π, and hydrogen bonding interactions to form 1D, 2D supramolecular structures. Luminescence investigation reveals that complexes 1 , 3 and 2 , 4 display strong red and green emission respectively, showing that terpy and 5,5′-DM-2,2′-bipy can act as sensitizing chromophores, but the former is more effective. The IR, TG-DTG, and the heat capacities of complexes 1–4 were also measured.
机译:四种新的镧系元素复合物,[LN(2,4-DCLBA)_(3)(Terpy)(H _(2)O)]·H _(2)O(Ln = Eu(1),TB(2)) ; [LN(2,4-DCLBA)_(3)(5,5'-DM-2,2'--3ipy)(C _(2)H _(5)OH)] _(2)(ln =欧盟(3),TB(4); 2,4-DCLBA:2,4-二氯苯甲酸盐; Terpy:2,2':6',2'' - Terpyridine; 5,5,5'-DM-2,2'-Bipy :通过在室温下通过常规溶液方法合成5,5'-二甲基-2,2'-吡啶,并在结构形式的特征是单晶和粉末X射线衍射。复合物1-2表现出单核镧系元素架构和每个LN〜(3+)离子是九个协调的采用扭曲的单次方形抗抗反馈分子几何形状,而复合物3-4表现出效果镧系元素架构,其中每个LN〜(3+)离子是八次协调采用扭曲的方形反抗分子几何形状。单核复合物1-2通过Cl-π和氢键相互作用缝合在一起,形成1D,2D,3D超分子结构。虽然复合物3-4通过Cl-C1,π-π和氢键相互作用填充,而形成1D,2D超分子结构。发光调查表明,复合物1,3和2,4分别显示出强烈的红色和绿色发射,表明Terpy和5,5'-DM-2,2'-Bipy可以充当发色团,但是前者更有效。还测量了IR,TG-DTG和复合物1-4的热容。

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