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基于双配体的硫代呫吨酮铂配合物在室温下的荧光和磷光发射

Dual ligand-based fluorescence and phosphorescence emission at room temperature from platinum thioxanthonyl complexes.

作者信息

Geist Fabian, Jackel Andrej, Winter Rainer F

机构信息

Fachbereich Chemie der Universität Konstanz, Universitätsstraße 10, D-78457 Konstanz, Germany.

出版信息

Dalton Trans. 2015 Mar 7;44(9):3974-87. doi: 10.1039/c4dt02410a.

Abstract

New square-planar platinum(II) complexes of the type trans-[Pt(PEt3)2(Tx)(X)] (X = Br, Cl, I or CN) bearing a σ-bonded thioxanthon-2-yl (Tx) ligand have been prepared and characterised by X-ray crystallography, cyclic voltammetry, and by NMR and electronic absorption and luminescence spectroscopy. The ligand X hardly influences the electronic transitions, which indicates that the relevant molecular orbitals are largely confined to the Pt-Tx chromophore. In agreement with TD-DFT calculations the energetically lowest electronic transition is assigned as the Tx-centred π→π* HOMO → LUMO excitation. All four complexes display dual emission from the σ-bonded Tx ligand at ca. 450 nm and at ca. 510 nm, which are assigned as fluorescence originating from the (1)π*-state and as phosphorescence originating from the (3)π*-state, respectively. The phosphorescence quantum yield increases with increasing σ-donor strength of the ligand X and reaches a uniquely high value of 18.8% for the chlorido complex Pt-Cl. Switching-on of Tx phosphorescence emission by the Pt(PEt3)2(X) fragment goes along with a reduction of the lifetime of the Tx triplet state from several ms in purely organic derivatives to ca. 2 μs in the complexes.

摘要

已制备出带有σ键硫代呫吨-2-基(Tx)配体的反式-[Pt(PEt3)2(Tx)(X)]型(X = Br、Cl、I或CN)新型平面正方形铂(II)配合物,并通过X射线晶体学、循环伏安法以及核磁共振、电子吸收和发光光谱对其进行了表征。配体X对电子跃迁影响很小,这表明相关分子轨道主要局限于Pt-Tx发色团。与含时密度泛函理论计算结果一致,能量最低的电子跃迁被指定为以Tx为中心的π→π* 最高占据分子轨道(HOMO)→最低未占分子轨道(LUMO)激发。所有四种配合物在约450 nm和约510 nm处均显示出σ键合Tx配体的双重发射,分别被指定为源自(1)π态的荧光和源自(3)π态的磷光。磷光量子产率随着配体X的σ供体强度增加而增加,对于氯配合物Pt-Cl达到了独特的18.8%的高值。由Pt(PEt3)2(X)片段开启Tx磷光发射的同时,Tx三重态的寿命从纯有机衍生物中的几毫秒缩短至配合物中的约2微秒。

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