Volpi Giorgio, Garino Claudio, Salassa Luca, Fiedler Jan, Hardcastle Kenneth I, Gobetto Roberto, Nervi Carlo
Department of Chemistry IFM, University of Turin via P. Giuria 7, 10125 Torino, Italy.
Chemistry. 2009 Jun 22;15(26):6415-27. doi: 10.1002/chem.200801474.
Luminescent ligands in Ir(III) cyclometalated complexes. The photophysical and photochemical properties of Ir-cyclometalated complexes containing luminescent ligands are evaluated (see figure). Significant admixture between Ir and ligand orbitals induces an efficient intersystem crossing. Photochemical reactions performed in the presence of oxygen lead to new Ir-cyclometalated complexes containing N(amido) groups directly bound to Ir.A series of phosphorescent cyclometalated heteroleptic iridi um(III) phenylpyridinato (ppy) complexes containing luminescent 1-pyridylimidazo[1,5-alpha]pyridine (pip) ligands, namely Ir(ppy)(2)(pip), have been synthesised, characterised and their electrochemical, photophysical and electronic properties studied. Seven X-ray structures have been resolved. Excitation of Ir(ppy)(2)(pip) in acetonitrile at room temperature results in a dual luminescence, strongly quenched by O(2). Four complexes show, in absence of O(2), a high-energy emission (assigned to a (3)MLLCT transition) with two maxima in the blue region of the visible spectra, and a second structured emission (assigned largely to a (3)LC pi-pi* transition) centred around lambda=555 nm. Lifetimes of high-energy emissions are between 0.6 and 1.3 mus. Time-dependent density functional calculations combined with the conductor-like polarisable continuum model method, with acetonitrile as solvent, have been used to calculate a series of ground and excited states of the derivatives under investigation, and the transitions compared with the experimental UV/Vis absorption spectra. A quick and efficient photochemical reaction has been observed for these iridium derivatives that leads to the formation of a new class of cyclometalated iridium complexes containing a stable deprotonated amide unusually coordinated to the metal through a nitrogen bond. The synthesis of a (15)N enriched selected ligand has been performed to investigate, by means of NMR, the particular facile route to these new set of derivatives. The electrochemical behaviour of all complexes is also reported.
铱(III)环金属化配合物中的发光配体。对含有发光配体的铱环金属化配合物的光物理和光化学性质进行了评估(见图)。铱和配体轨道之间的显著混合引发了有效的系间窜越。在氧气存在下进行的光化学反应产生了新的铱环金属化配合物,其中含直接与铱相连的N(酰胺基)基团。已合成、表征了一系列含有发光1-吡啶基咪唑并[1,5-α]吡啶(pip)配体的磷光环金属化杂配铱(III)苯基吡啶(ppy)配合物,即[Ir(ppy)₂(pip)]⁺,并研究了它们的电化学、光物理和电子性质。解析了七个X射线结构。室温下在乙腈中激发[Ir(ppy)₂(pip)]⁺会产生双重发光,被O₂强烈猝灭。四种配合物在无O₂时显示出高能发射(归因于³MLLCT跃迁),在可见光谱的蓝色区域有两个最大值,以及第二个结构化发射(主要归因于³LCπ-π*跃迁),中心波长约为555 nm。高能发射的寿命在0.6至1.3 μs之间。结合导体类极化连续介质模型方法的含时密度泛函计算,以乙腈为溶剂,用于计算所研究衍生物的一系列基态和激发态,并将跃迁与实验紫外/可见吸收光谱进行比较。已观察到这些铱衍生物发生快速有效的光化学反应,导致形成一类新的环金属化铱配合物,其中含有通过氮键异常配位至金属的稳定去质子化酰胺。已合成了一种¹⁵N富集的选定配体,通过核磁共振研究通往这组新衍生物的特定简便途径。还报道了所有配合物的电化学行为。