Stoyanov Stanislav R, Villegas John M, Rillema D Paul
Department of Chemistry, Wichita State University, Wichita, Kansas 67260-0051, USA.
Inorg Chem. 2003 Dec 1;42(24):7852-60. doi: 10.1021/ic030084n.
Singlet ground-state geometry optimization of the monomer, four dimers, and the trimer of [Pt(bph)(CO)(2)], where bph = biphenyl dianion, was performed at the B3LYP level of density functional theory (DFT) with a mixed basis set (6-311G** on C, O, and H atoms; the Stuttgart/Dresden (SDD) effective core potential (ECP) on the Pt core; [6s5p3d] on the Pt valence shell). The aggregation was based on Pt[bond]Pt binding as well as on pi[bond]pi and electrostatic interactions. The lowest-lying triplet-state geometries of the monomer, one dimer, and the trimer of the complex were also optimized using the above theory. Significant shortening of the Pt[bond]Pt bond was recorded in the triplet state compared to the singlet one. A number of low-energy singlet and triplet allowed excited states were calculated using time-dependent density functional theory (TDDFT) and analyzed with respect to absorption, excitation, and emission spectra collected under various conditions. Simulated spectra of the monomer and dimer based on the singlet excited states were correlated with the absorption spectrum. The emission in concentrated solution was due to the triplet dimer, and the emitting states were (3)MLCT and Pt-centered states.
对[Pt(bph)(CO)₂](其中bph = 联苯二价阴离子)的单体、四个二聚体和三聚体进行了单重态基态几何结构优化,采用密度泛函理论(DFT)的B3LYP水平和混合基组(C、O和H原子采用6 - 311G**;Pt核心采用斯图加特/德累斯顿(SDD)有效核势(ECP);Pt价层采用[6s5p3d])。聚集作用基于Pt—Pt键合以及π—π和静电相互作用。还使用上述理论对该配合物的单体、一个二聚体和三聚体的最低三重态几何结构进行了优化。与单重态相比,三重态下记录到Pt—Pt键显著缩短。利用含时密度泛函理论(TDDFT)计算了许多低能量单重态和三重态允许激发态,并针对在各种条件下收集的吸收、激发和发射光谱进行了分析。基于单重态激发态的单体和二聚体的模拟光谱与吸收光谱相关。浓溶液中的发射归因于三重态二聚体,发射态为(³)MLCT和以Pt为中心的态。