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首页> 外文期刊>European journal of inorganic chemistry >Tuning the electronics of phosphorescent, amide-functionalized, cyclometalated Ir ~(III) complexes: Syntheses, structures, spectroscopy and theoretical studies
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Tuning the electronics of phosphorescent, amide-functionalized, cyclometalated Ir ~(III) complexes: Syntheses, structures, spectroscopy and theoretical studies

机译:调节磷光,酰胺官能化,环金属化的Ir〜(III)配合物的电子学:合成,结构,光谱学和理论研究

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摘要

Iridium(III) complexes were synthesized with the general form [Ir(L ~(1-6)) _2(bpy)]PF _6 (bpy = 2,2'-bipyridine), where ligands (LH ~(1-6)) are based on the N-functionalization of 2-phenyl-N-aryl/alkyl-quinoline-4-carboxamides. Single crystal X-ray diffraction studies were undertaken on two complexes, which show that each adopts a distorted octahedral coordination geometry with retention of the expected trans-N, cis-C arrangement of the cyclometalated ligands. Electrochemical studies confirmed the subtle perturbing of theIr III/IV redox couple as a function of ligand structure. Scalar relativistic DFT studies provided qualitative descriptions of the HOMO and LUMO energy levels of the six complexes. The calculated HOMO is generally located over the Ir(5d) centre (about 45 %) and the amide-substituted 2-phenylquinoline ligand, whilst the LUMO is localized over the ancillary 2,2'-bipyridine ligand. Similar calculations for [Ir(L ~6) _2(bpy)]PF _6 revealed a different HOMO depiction with locale on the pendant chromophores. A companion calculation, using an alternative relativistic approach (i.e. incorporating spin-orbit coupling effects) conducted on a simplified model compound, provided HOMO/LUMO depictions that are essentially identical to the non-relativistic calculation, which predicts long-lived phosphorescent emission from the HOMO-LUMO transition. Luminescence studies showed the predictable and tunable phosphorescent emission wavelengths between 585-627 nm. The experimental and theoretical studies suggest that the electronic nature of the pendant amide substituent influences the energy of the emitting state - the strongly electron-withdrawing groups bathochromically shift the luminescence wavelength. The synthesis and characterization of a series of cationic cyclometalated Ir III complexes is described. The complexes are adorned with amide substituents of varied electronic character. The resultant influence of these groups upon the photophysical properties of the complexes are discussed in detail through experimental and theoretical approaches.
机译:以[Ir(L〜(1-6))_2(bpy)] PF _6(bpy = 2,2'-bipyridine)的一般形式合成铱(III)配合物,其中配体(LH〜(1-6) )是基于2-苯基-N-芳基/烷基喹啉-4-羧酰胺的N-官能化。对两种络合物进行了单晶X射线衍射研究,结果表明每种络合物均采用扭曲的八面体配位几何结构,并保留了环金属化配体的预期反式N,顺式C排列。电化学研究证实,Ir III / IV氧化还原对的微扰是配体结构的函数。标量相对论DFT研究对六个复合物的HOMO和LUMO能级进行了定性描述。计算的HOMO通常位于Ir(5d)中心(约45%)和酰胺取代的2-苯基喹啉配体上,而LUMO则位于辅助的2,2'-联吡啶配体上。对[Ir(L〜6)_2(bpy)] PF _6的相似计算显示了不同的HOMO描绘,其位置在侧基生色团上。伴随计算,使用对简化模型化合物进行的替代相对论方法(即合并自旋轨道耦合效应),提供了与非相对论计算基本相同的HOMO / LUMO描绘,后者预测了来自相对论计算的长寿命磷光发射HOMO-LUMO过渡。发光研究表明,可预测和可调的磷光发射波长在585-627 nm之间。实验和理论研究表明,侧基酰胺取代基的电子性质会影响发射态的能量-吸电子性强的基团通过红移的方式改变了发光波长。描述了一系列阳离子环金属化的Ir III配合物的合成和表征。配合物具有各种电子特性的酰胺取代基。通过实验和理论方法详细讨论了这些基团对配合物光物理性质的影响。

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