Makedonas Christodoulos, Mitsopoulou Christiana A, Lahoz Fernando J, Balana Ana I
Inorganic Chemistry Laboratory, Department of Chemistry, National and Kapodistrian University of Athens, Panepistimiopolis, Zografou 15771, Greece.
Inorg Chem. 2003 Dec 29;42(26):8853-65. doi: 10.1021/ic034978j.
The synthesis and characterization of Pd(phen)(bdt) (1) (phen = 1,10-phenanthroline, bdt = 1,2-benzenedithiolate) is presented. 1 crystallizes in the monoclinic space group P2(1)/c, alpha = 11.281(4) A, b = 20.498(8) A, c = 8.374(3) A, beta = 90.234(8), V = 1936.5(13) A(3), Z = 4, and is isostructural with its previously reported related complexes. The ground and low lying excited electronic states in 1 and in the related complexes Pd(bpy)(bdt) (2), Pt(bpy)(bdt) (3), Pt(bpy)(mnt) (4), and Pt(bpy)(edt) (5) [where bpy = 2,2'-bipyridine, edt = ethylene-1,2-dithiolate, and mnt = maleonitriledithiolate] are studied using density functional theory techniques. The electronic properties of 1-5 are studied using the B3LYP functional. Optimized geometries are compared to experimentally observed structures. Time dependent density functional theory (TDDFT) is employed to investigate the excited singlet and triplet states. The calculated energies of the lowest singlet state and the lowest triplet state in all five complexes are in considerable agreement with experimental data. It is shown that variation of both metal and dithiolate-ligand going from 1 and 2 to 3, 4, and 5 has a substantial impact on the spectroscopic and excited-state properties, indicating at the same time the mixed metal/dithiolate character of the HOMO orbital. All the low-lying transitions are categorized as MMLL'CT transitions. The emissive state of all complexes is assigned as a triplet dithiolate/metal to diimine charge transfer with differences in the structures of the emissions resulting from differences in the pi dithiolate orbital of the mnt, bdt, and edt as well as from differences in metal.
本文介绍了Pd(phen)(bdt)(1)(phen = 1,10 - 菲咯啉,bdt = 1,2 - 苯二硫醇盐)的合成与表征。1以单斜晶系空间群P2(1)/c结晶,α = 11.281(4) Å,b = 20.498(8) Å,c = 8.374(3) Å,β = 90.234(8),V = 1936.5(13) ų,Z = 4,并且与其先前报道的相关配合物同构。使用密度泛函理论技术研究了1以及相关配合物Pd(bpy)(bdt)(2)、Pt(bpy)(bdt)(3)、Pt(bpy)(mnt)(4)和Pt(bpy)(edt)(5)[其中bpy = 2,2'-联吡啶,edt = 乙烯 - 1,2 - 二硫醇盐,mnt = 马来腈二硫醇盐]的基态和低激发电子态。使用B3LYP泛函研究了1 - 5的电子性质。将优化后的几何结构与实验观察到的结构进行比较。采用含时密度泛函理论(TDDFT)研究激发单重态和三重态。所有五个配合物中最低单重态和最低三重态的计算能量与实验数据相当吻合。结果表明,从1和2到3、4和5,金属和二硫醇盐配体的变化对光谱和激发态性质有重大影响,同时表明HOMO轨道具有混合金属/二硫醇盐特征。所有低激发跃迁都归类为MMLL'CT跃迁。所有配合物的发射态都被指定为三重态二硫醇盐/金属到二亚胺的电荷转移,发射结构的差异源于mnt、bdt和edt中π二硫醇盐轨道的差异以及金属的差异。