Department of Chemical, Physical, Mathematical and Natural Sciences, University of Sassari, Via Vienna 2, 07100 Sassari, Italy.
School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff CF10 3AT, UK.
Molecules. 2022 Oct 25;27(21):7249. doi: 10.3390/molecules27217249.
Rollover cyclometalated complexes constitute a family of derivatives which differ from classical cyclometalated species in certain aspects. Various potential application fields have been developed for both classes of compounds, which have both similarities and differences. In order to uncover the relationships and distinctions between these two families of compounds, four Pt(II) cyclometalated complexes derived from 2-phenylpyridine (ppy) and 2,2'-bipyridine (bpy), assumed as prototypical ligands, were compared. For this study, an electron rich isostructural and isoelectronic pair of compounds, [Pt(N^C)Me(PPh)], and an electron-poorer compound, [Pt(N^C)Cl(PPh)] were chosen (N^C = ppy or bpy). DFT calculations, cyclic voltammetry, and UV-Vis spectra also helped to shed light into these species. Due to the presence of the more electronegative nitrogen in place of a C-H group, the rollover bpy-H ligand becomes a slightly weaker donor than the classical ppy-H ligand, and hence, generates (slightly) more stable cyclometalated complexes, lower energy frontier molecular orbitals, and electron-poorer platinum centers. On the whole, it was revealed that classical and rollover complexes have overall structural similarity, which contrasts to their somewhat different chemical behavior.
翻转环金属化配合物构成了一类衍生物,它们在某些方面与经典的环金属化物种不同。这两类化合物都有各自的潜在应用领域,它们既有相似之处,也有不同之处。为了揭示这两类化合物之间的关系和区别,比较了四个基于 2-苯基吡啶(ppy)和 2,2'-联吡啶(bpy)的典型配体的 Pt(II) 翻转环金属化配合物。对于这项研究,选择了一对富电子的同构和等电子的化合物,[Pt(N^C)Me(PPh)]3和一个电子较少的化合物,[Pt(N^C)Cl(PPh)]3(N^C = ppy 或 bpy)。DFT 计算、循环伏安法和紫外可见光谱也有助于了解这些物种。由于存在更具电负性的氮代替 C-H 基团,翻转的 bpy-H 配体成为比经典的 ppy-H 配体稍弱的供体,因此生成(略)更稳定的环金属化配合物、更低能量的前线分子轨道和电子较少的铂中心。总的来说,揭示了经典和翻转配合物具有整体结构相似性,这与它们略有不同的化学行为形成对比。