Institut für Physik, Universität Rostock , Albert-Einstein-Str. 23-24, 18059 Rostock, Germany.
Chemistry Department, Faculty of Science, King Abdulaziz University , 21589 Jeddah, Saudi Arabia.
Struct Dyn. 2016 Aug 30;3(6):062601. doi: 10.1063/1.4961953. eCollection 2016 Nov.
The Frenkel exciton model was adapted to describe X-ray absorption and resonant inelastic scattering spectra of polynuclear transition metal complexes by means of the restricted active space self-consistent field method. The proposed approach allows to substantially decrease the requirements on computational resources if compared to a full supermolecular quantum chemical treatment. This holds true, in particular, in cases where the dipole approximation to the electronic transition charge density can be applied. The computational protocol was applied to the calculation of X-ray spectra of the hemin complex, which forms dimers in aqueous solution. The aggregation effects were found to be comparable to the spectral alterations due to the replacement of the axial ligand by solvent molecules.
弗伦克尔激子模型被改编为通过受限活性空间自洽场方法来描述多核过渡金属配合物的 X 射线吸收和共振非弹性散射光谱。与全超分子量子化学处理相比,所提出的方法可以大大降低对计算资源的要求。如果可以应用电子跃迁电荷密度的偶极子近似,则尤其如此。该计算方案被应用于血红素配合物的 X 射线光谱的计算,该配合物在水溶液中形成二聚体。发现聚集效应与由于轴向配体被溶剂分子取代而导致的光谱变化相当。