Witte Matthias, Herres-Pawlis Sonja
RWTH Aachen University, Institute of Inorganic Chemistry, Chair of Bioinorganic Chemistry, Landoltweg 1, 52074 Aachen, Germany.
Phys Chem Chem Phys. 2017 Oct 11;19(39):26880-26889. doi: 10.1039/c7cp04686c.
This work presents for the first time the impact of relativistic effects on the CuO peroxide dicopper(ii)-bis(μ-oxo) dicopper (iii) equilibrium bonding motif in existing tyrosinase model complexes [Cu(btmgp)(μ-O)] and [Cu{HC(tBuPz)Py}(O)] [S. Herres et al., Inorg. Chim. Acta, 2005, 358, 1089; S. Herres-Pawlis et al., Eur. J. Inorg. Chem., 2005, 3815; A. Hoffmann et al., Angew. Chem., Int. Ed., 2013, 52, 5398]. We use density functional theory (TPSSh/cc-pVTZ+D3BJ) with various relativistic approaches (ECPs, DKH, ZORA) to tackle the question of impact and find, as already known for small model complexes in the literature, that the O core is more stabilized with respect to the P core by the relativistic influence [D. G. Liakos and F. Neese, J. Chem. Theory Comput., 2011, 7, 1511]. Whereas DKH and ZORA yield similar results, ECPs underestimate the predicted effect. By calculating the functional of the relativistic overlap change, we can exactly identify the relativistic changes at the molecular orbital level and narrow down the affected MOs. Thus, by performing a detailed bond analysis utilizing the overlap population, we are able to rationalize the effects at the chemical level by finding relativistic bond stabilization in both isomers, which is more dominating in the O core. In conclusion, relativistic effects already play an important role in dicopper cores and should be considered.
这项工作首次展示了相对论效应,对现有酪氨酸酶模型配合物[Cu(btmgp)(μ-O)]和[Cu{HC(tBuPz)Py}(O)]中过氧化铜双铜(II)-双(μ-氧代)双铜(III)平衡键合 motif 的影响[S. Herres 等人,《无机化学学报》,2005 年,358 卷,1089 页;S. Herres-Pawlis 等人,《欧洲无机化学杂志》,2005 年,3815 页;A. Hoffmann 等人,《德国应用化学》,2013 年,52 卷,5398 页]。我们使用密度泛函理论(TPSSh/cc-pVTZ+D3BJ)和各种相对论方法(有效核势、DKH、ZORA)来解决影响问题,并发现,正如文献中关于小分子模型配合物已为人所知的那样,通过相对论影响,O 核相对于 P 核更稳定[D. G. Liakos 和 F. Neese,《化学理论与计算杂志》,2011 年,7 卷,1511 页]。虽然 DKH 和 ZORA 产生相似的结果,但有效核势低估了预测效果。通过计算相对论重叠变化的泛函,我们可以准确识别分子轨道水平上的相对论变化,并缩小受影响的分子轨道范围。因此,通过利用重叠布居进行详细的键分析,我们能够通过在两种异构体中发现相对论键稳定化来合理化化学水平上的影响,这在 O 核中更为显著。总之,相对论效应在双铜核中已经起着重要作用,应该予以考虑。