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控制铂(II)配合物辐射和非辐射衰变过程的取代基效应的理论研究。

Theoretical study of the substituent effect controlling the radiative and non-radiative decay processes of platinum(ii) complexes.

作者信息

Shen Wei, Zhang Wenting, Zhu Chaoyuan

机构信息

Department of Applied Chemistry, Institute of Molecular Science and Center for Interdisciplinary Molecular Science, National Chiao-Tung University, Hsinchu 30010, Taiwan.

School of Chemistry and Chemical Engineering, Southwest University, Chongqing, P. R. China.

出版信息

Phys Chem Chem Phys. 2017 Aug 30;19(34):23532-23540. doi: 10.1039/c7cp04376g.

Abstract

Six platinum complexes bearing different electron-withdrawing groups (-CN, -NO, -o-carborane, -SF and -CFCFCF) have been designed to explore the electron-withdrawing capability and the conjugative effect of the substituents, and density functional theory (DFT) and time-dependent density functional theory (TDDFT) calculations have been performed to determine their electronic structures and phosphorescent properties. Three factors, including the oscillator strength μ(S) for S-S excitations, the energy gap between the triplet and singlet states ΔE(S-T) and the spin-orbital coupling 〈T|Ĥ|S〉, have been calculated to analyze the radiative processes. In addition, temperature-independent, temperature-dependent and triplet-triplet annihilation (TTA) have been analyzed to determine the non-radiative decay processes. Introducing strong electron-withdrawing groups into phosphorescent transition-metal complexes has a significant impact on the phosphorescent properties and some regularity besides the inductive effect (the electron-withdrawing capability) and the conjugative effect of the substituents. The stronger electron-withdrawing capability and smaller conjugative effect can give rise to blue-shifted emission behavior and give larger radiative decay rate constants. The results demonstrate that complex 4 (-NO substituted) and complex 2 (-o-carborane) are possible candidates for blue-emitting materials.

摘要

设计了六种带有不同吸电子基团(-CN、-NO、-邻碳硼烷、-SF和-CFCFCF)的铂配合物,以探究取代基的吸电子能力和共轭效应,并进行了密度泛函理论(DFT)和含时密度泛函理论(TDDFT)计算,以确定它们的电子结构和磷光性质。计算了三个因素,包括S-S激发的振子强度μ(S)、三重态和单重态之间的能隙ΔE(S-T)以及自旋-轨道耦合〈T|Ĥ|S〉,以分析辐射过程。此外,还分析了与温度无关、与温度有关的情况以及三重态-三重态湮灭(TTA),以确定非辐射衰变过程。除了取代基的诱导效应(吸电子能力)和共轭效应外,将强吸电子基团引入磷光过渡金属配合物对磷光性质有显著影响,并呈现出一些规律性。吸电子能力越强且共轭效应越小,会导致发射行为蓝移,并给出更大的辐射衰变速率常数。结果表明,配合物4(-NO取代)和配合物2(-邻碳硼烷)可能是蓝色发光材料的候选物。

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