基于咪唑的镧系(III)配合物[Ln = Sm、Eu、Gd、Tb、Dy]的发光调谐。

Luminescence tuning of imidazole-based lanthanide(III) complexes [Ln = Sm, Eu, Gd, Tb, Dy].

机构信息

Department of Chemistry, Faculty of Science, Toho University, Funabashi, Chiba, Japan.

出版信息

Dalton Trans. 2011 Mar 14;40(10):2249-56. doi: 10.1039/c0dt01046d. Epub 2011 Jan 18.

Abstract

To tune the lanthanide luminescence in related molecular structures, we synthesized and characterized a series of lanthanide complexes with imidazole-based ligands: two tripodal ligands, tris{[2-{(1-methylimidazol-2-yl)methylidene}amino]ethyl}amine (Me(3)L), and tris{[2-{(imidazol-4-yl)methylidene}amino]ethyl}amine (H(3)L), and the dipodal ligand bis{[2-{(imidazol-4-yl)methylidene}amino]ethyl}amine (H(2)L). The general formulas are Ln(Me(3)L)(H(2)O)(2)(3)·3H(2)O (Ln = 3+ lanthanide ion: Sm (1), Eu (2), Gd (3), Tb (4), and Dy (5)), Ln(H(3)L)(NO(3))(2)·MeOH (Ln(3+) = Sm (6), Eu (7), Gd (8), Tb (9), and Dy (10)), and Ln(H(2)L)(NO(3))(2)(MeOH)·MeOH (Ln(3+) = Sm (11), Eu (12), Gd (13), Tb (14), and Dy (15)). Each lanthanide ion is 9-coordinate in the complexes with the Me(3)L and H(3)L ligands and 10-coordinate in the complexes with the H(2)L ligand, in which counter anion and solvent molecules are also coordinated. The complexes show a screw arrangement of ligands around the lanthanide ions, and their enantiomorphs form racemate crystals. Luminescence studies have been carried out on the solid and solution-state samples. The triplet energy levels of Me(3)L, H(3)L, and H(2)L are 21 000, 22 700, and 23 000 cm(-1), respectively, which were determined from the phosphorescence spectra of their Gd(3+) complexes. The Me(3)L ligand is an effective sensitizer for Sm(3+) and Eu(3+) ions. Efficient luminescence of Sm(3+), Eu(3+), Tb(3+), and Dy(3+) ions was observed in complexes with the H(3)L and H(2)L ligands. Ligand modification by changing imidazole groups alters their triplet energy, and results in different sensitizing ability towards lanthanide ions.

摘要

为了调节镧系元素的发光,我们合成并表征了一系列基于咪唑的镧系元素配合物:两种三脚架配体,三{[2-(1-甲基咪唑-2-基)亚甲基]氨基}乙基}胺(Me(3)L)和三{[2-(咪唑-4-基)亚甲基]氨基}乙基}胺(H(3)L)和二足配体双{[2-(咪唑-4-基)亚甲基]氨基}乙基}胺(H(2)L)。通式为Ln(Me(3)L)(H(2)O)(2)(3)·3H(2)O(Ln=3+镧系元素离子:Sm(1)、Eu(2)、Gd(3)、Tb(4)和 Dy(5))、Ln(H(3)L)(NO(3))(2)·MeOH(Ln(3+) = Sm(6)、Eu(7)、Gd(8)、Tb(9)和 Dy(10))和Ln(H(2)L)(NO(3))(2)(MeOH)·MeOH(Ln(3+) = Sm(11)、Eu(12)、Gd(13)、Tb(14)和 Dy(15))。每个镧系元素离子在配合物中与 Me(3)L 和 H(3)L 配体具有 9 配位,与 H(2)L 配体具有 10 配位,其中抗衡阴离子和溶剂分子也与之配位。配合物表现出镧系元素离子周围配体的螺旋排列,它们的对映异构体形成外消旋晶体。已经对固态和溶液态样品进行了发光研究。Me(3)L、H(3)L 和 H(2)L 的三重态能级分别为 21000、22700 和 23000cm(-1),这是从它们的 Gd(3+)配合物的磷光光谱中确定的。Me(3)L 配体是 Sm(3+)和 Eu(3+)离子的有效敏化剂。在具有 H(3)L 和 H(2)L 配体的配合物中观察到 Sm(3+)、Eu(3+)、Tb(3+)和 Dy(3+)离子的高效发光。通过改变咪唑基团来修饰配体,改变其三重态能量,从而对镧系元素离子产生不同的敏化能力。

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