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Density-functional analysis of the electronic structure of tris-bipyridyl Ru(II) sensitisers

机译:三联吡啶Ru(II)敏化剂电子结构的密度泛函分析

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Excited state transitions and energies of a series of [Ru(bpy)(3)](2+) type complexes incorporating the ligand, 4,4'-bis-phosphonato(methyl)-2,2'-bipyridine (dmpbpy)was investigated, and the influence of this organometallic ligand on the electronic structure of the complexes was examined using Time-Dependent Density Functional Theory (TD-DFT). Experimental data and the theoretical TD-DFT calculations were presented to support the effect of non-equivalent ligand substitution on spectral and molecular orbital (MO)energy properties on this class of tris-chelate surface sensitisers. For the series of complexes studied, it was identified that the lowest lying LUMO states were consistently found to reside on the ligand 2,2'-bipyridine (bpy) for gas phase calculations. As an implication of this, it was suggested that this could impact the effectiveness of these complexes as surface sensitisers in PEC cell applications such as the dye-sensitised solar cell (DSC) due to the lower probability of the excited state electron residing on a ligand anchored to the semiconductor substrate. However, further calculations in a solvation medium showed that the electron withdrawing nature of PO3H2 on dmpbpy saw the lowest lying LUMO states are populated on dmpbpy. This inhomogeneous distribution of electron density across non-equivalent ligands may have implications for further 'spectral tuning' of surface sensitisers. Despite the TD-DFT gas phase calculations not being corrected for solvent/media effects, the three longest wavelength bands associated with known charge transfer phenomena were identified. The symmetry allowed (nu) over bar (MLCT) in the visible region was assigned as a pi(psi)*<- d pi transition, the mid-UV spectrum (nu) over bar (LC) was assigned pi(psi)*<-pi in origin. Whilst the near-UV shoulder on the blue side of (nu) over bar (MLCT) showed d sigma "d pi and pi*" d pi transitional character and was tentatively described as nu(MC/MLCT). UV-Vis absorption spectra calculated for solvated analogues containing dmpbpy indicated that the low energy transitions associated with the MLCT are subject to bathochromic shift due to solvent polarity by 0.062 eV (500 cm(-1)) compared with the gas phase calculations, which is more highly correlated to the observed experimental transitions.
机译:一系列包含配体4,4'-双膦酰基(甲基)-2,2'-联吡啶(dmpbpy)的[Ru(bpy)(3)](2+)型配合物的激发态跃迁和能量进行了研究,并使用时变密度泛函理论(TD-DFT)研究了这种有机金属配体对配合物电子结构的影响。提出了实验数据和理论TD-DFT计算,以支持非等价配体取代对这类三螯合物表面敏化剂的光谱和分子轨道(MO)能量性质的影响。对于所研究的一系列配合物,已确定始终发现最低的LUMO状态位于配体2,2'-联吡啶(bpy)上用于气相计算。这暗示了,这可能会影响这些络合物作为PEC电池应用(如染料敏化太阳能电池(DSC))中表面敏化剂的有效性,因为激发态电子驻留在配体上的可能性较低锚定到半导体衬底上。但是,在溶剂化介质中进行的进一步计算表明,dmpbpy上PO3H2的吸电子性质表明dmpbpy上填充了最低的LUMO状态。电子密度跨非等效配体的这种不均匀分布可能对表面敏化剂的进一步“光谱调谐”具有影响。尽管未针对溶剂/介质效应对TD-DFT气相计算进行校正,但仍可识别出与已知电荷转移现象相关的三个最长波段。可见区上的棒(MLCT)上的允许对称度(nu)定义为pi(psi)* <-d pi过渡,棒(LC)上的中紫外光谱(nu)分配为pi(psi)* <-pi的来源。尽管(nu)over bar(MLCT)的蓝色侧上的近UV肩部显示d sigma“ d pi和pi *” d pi过渡特征,并暂称为nu(MC / MLCT)。计算得出的含dmpbpy的溶剂化类似物的UV-Vis吸收光谱表明,与气相计算相比,与MLCT相关的低能跃迁由于溶剂极性而发生0.062 eV(500 cm(-1))的红移。与观察到的实验转换高度相关。

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