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单核和双核d(8)配合物的电子结构与光谱性质:对有前景的磷光材料的理论探索

Electronic structures and spectroscopic properties of mono- and binuclear d(8) complexes: a theoretical exploration on promising phosphorescent materials.

作者信息

Pan Qing-Jiang, Zhang Hong-Xing, Zhou Xin, Fu Hong-Gang, Yu Hai-Tao

机构信息

State Key Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun 130023, China.

出版信息

J Phys Chem A. 2007 Jan 18;111(2):287-94. doi: 10.1021/jp065183b.

Abstract

The structures of trans-[M(2)(CN)(4)(PH(2)CH(2)PH(2))(2)] (M = Pt (1), Pd (2), and Ni (3)), trans-[Pt(2)X(4)(PH(2)CH(2)PH(2))(2)] (X = Cl (4) and Br (5)), and trans-[M(CN)(2)(PH(3))(2)] (M = Pt (6), Pd (7), and Ni (8)) in the ground state were optimized using the MP2 method. Frequency calculations reveal that the weak metal-metal interaction is essentially attractive for 1, 2, 4, and 5 but not for 3. The TD-DFT calculations associated with the polarized continuum model (PCM) were performed to predict absorption spectra in CH(2)Cl(2) solution. Experimental spectra are well reproduced by our results. With respect to analogous mononuclear d(8) complexes (6-8), a large red shift of the absorption wavelength was calculated for the binuclear d(8) complexes (1-3). Relative to 1 with unsaturated CN- donors, introduction of saturated halogen donors into 4 and 5 changes their electronic structures, especially the HOMO and LUMO. The TD-DFT and subsequent unrestricted MP2 calculations predict that 1 produces the lowest-energy d --> p emission while 2-5 favor the d --> d emissions, agreeing with experimental observations.

摘要

使用MP2方法对基态下的反式-[M₂(CN)₄(PH₂CH₂PH₂)₂](M = Pt (1)、Pd (2) 和Ni (3))、反式-[Pt₂X₄(PH₂CH₂PH₂)₂](X = Cl (4) 和Br (5))以及反式-[M(CN)₂(PH₃)₂](M = Pt (6)、Pd (7) 和Ni (8))的结构进行了优化。频率计算表明,弱金属-金属相互作用对1、2、4和5本质上具有吸引力,但对3则不然。进行了与极化连续介质模型(PCM)相关的TD-DFT计算,以预测CH₂Cl₂溶液中的吸收光谱。我们的结果很好地再现了实验光谱。相对于类似的单核d⁸配合物(6 - 8),双核d⁸配合物(1 - 3)的吸收波长有较大的红移。相对于具有不饱和CN⁻供体的1,在4和5中引入饱和卤素供体改变了它们的电子结构,特别是最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)。TD-DFT以及随后的无限制MP2计算预测,1产生能量最低的d→p发射,而2 - 5则有利于d→d发射,这与实验观察结果一致。

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