Wu Yinghua, Brédas Jean-Luc
School of Chemistry and Biochemistry and Center for Organic Photonics and Electronics, Georgia Institute of Technology, 901 Atlantic Drive NW, Atlanta, Georgia, 30332-0400, USA.
J Chem Phys. 2008 Dec 7;129(21):214305. doi: 10.1063/1.3027514.
The phosphorescent emission spectra of fac-tris(2-phenylpyridine) iridium [fac-Ir(ppy)(3)] due to the lowest triplet T(1) and T(2) states are simulated using the harmonic oscillator approximation for the S(0), T(1), and T(2) potential energy surfaces (PESs) and taking the Duschinsky rotation into account. The simulations involve the propagation of 177-dimensional wave packets on the coupled PES according to the Herman-Kluk (HK) semiclassical (SC) initial value representation (IVR) method. The HK SC-IVR method is employed because of its accuracy for the PES with mode mixing and its efficiency in dealing with coupled degrees of freedom for large systems. The simulated emission spectrum due to T(1) reproduces the structures of the emission spectra observed experimentally, while T(2) is found very unlikely to participate in the phosphorescent emission. Although the effect of the Duschinsky mode mixing is small for the T(1) state, neglecting it blueshifts the spectrum due to the T(2) state by 800 cm(-1) and changes the relative intensities, indicating that the importance of the Duschinsky rotation is rather unpredictable and should not be overlooked. The present simulations demonstrate that the simple harmonic oscillator approximation combined with the Duschinsky rotation can adequately describe the photophysics of fac-Ir(ppy)(3) and that the HK SC-IVR method is a powerful tool in studies of this kind.
利用S(0)、T(1)和T(2)势能面(PES)的简谐近似并考虑杜施金斯基转动,模拟了面式三(2-苯基吡啶)铱[面-Ir(ppy)₃]因最低三重态T(1)和T(2)态产生的磷光发射光谱。模拟过程涉及根据赫尔曼-克鲁克(HK)半经典(SC)初值表示(IVR)方法在耦合PES上传播177维波包。采用HK SC-IVR方法是因为其对具有模式混合的PES具有准确性,且在处理大系统的耦合自由度方面具有效率。由T(1)产生的模拟发射光谱再现了实验观测到的发射光谱结构,而发现T(2)极不可能参与磷光发射。尽管杜施金斯基模式混合对T(1)态的影响较小,但忽略它会使T(2)态的光谱蓝移800 cm⁻¹并改变相对强度,这表明杜施金斯基转动的重要性相当不可预测且不应被忽视。目前的模拟表明,简谐近似与杜施金斯基转动相结合能够充分描述面-Ir(ppy)₃的光物理过程,并且HK SC-IVR方法是这类研究中的有力工具。