Hoffmann Alexander, Rohrmüller Martin, Jesser Anton, dos Santos Vieira Ines, Schmidt Wolf Gero, Herres-Pawlis Sonja
Department Chemie, Ludwig-Maximilians-Universität München, Butenandtstr. 5-13, 81377, München, Germany.
J Comput Chem. 2014 Nov 5;35(29):2146-61. doi: 10.1002/jcc.23740. Epub 2014 Sep 25.
Ground- and excited-state properties of copper(II) charge-transfer systems have been investigated starting from density-functional calculations with particular emphasis on the role of (i) the exchange and correlation functional, (ii) the basis set, (iii) solvent effects, and (iv) the treatment of dispersive interactions. Furthermore (v), the applicability of TD-DFT to excitations of copper(II) bis(chelate) charge-transfer systems is explored by performing many-body perturbation theory (GW + BSE), independent-particle approximation and ΔSCF calculations for a small model system that contains simple guanidine and imine groups. These results show that DFT and TD-DFT in particular in combination with hybrid functionals are well suited for the description of the structural and optical properties, respectively, of copper(II) bis(chelate) complexes. Furthermore, it is found an accurate theoretical geometrical description requires the use of dispersion correction with Becke-Johnson damping and triple-zeta basis sets while solvent effects are small. The hybrid functionals B3LYP and TPSSh yielded best performance. The optical description is best with B3LYP, whereby heavily mixed molecular transitions of MLCT and LLCT character are obtained which can be more easily understood using natural transition orbitals. An natural bond orbital analysis sheds light on the donor properties of the different donor functions and the intraguanidine stabilization during coordination to copper(I) and (II).
从密度泛函计算出发,研究了铜(II)电荷转移体系的基态和激发态性质,特别强调了(i)交换关联泛函、(ii)基组、(iii)溶剂效应和(iv)色散相互作用处理的作用。此外(v),通过对包含简单胍基和亚胺基的小模型体系进行多体微扰理论(GW + BSE)、独立粒子近似和ΔSCF计算,探索了TD-DFT对铜(II)双(螯合物)电荷转移体系激发的适用性。这些结果表明,DFT和TD-DFT,特别是与杂化泛函结合时,分别非常适合描述铜(II)双(螯合物)配合物的结构和光学性质。此外,发现准确的理论几何描述需要使用具有Becke-Johnson阻尼的色散校正和三重ζ基组,而溶剂效应较小。杂化泛函B3LYP和TPSSh表现最佳。用B3LYP进行光学描述最佳,由此得到了具有MLCT和LLCT特征的高度混合的分子跃迁,使用自然跃迁轨道可以更容易理解这些跃迁。自然键轨道分析揭示了不同供体函数的供体性质以及与铜(I)和(II)配位过程中胍内的稳定性。