Laboratory of Photonics and Interfaces, Institute of Chemical Sciences and Engineering, École Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
Dalton Trans. 2014 Apr 21;43(15):5667-79. doi: 10.1039/c3dt52739e. Epub 2013 Dec 18.
While phosphorescent cyclometalated iridium(iii) complexes have been widely studied, only correlations between oxidation potential EOX and Hammett constant σ, and between the redox gap (ΔEREDOX = EOX-ERED) and emission or absorption wavelength (λabs, λem) have been reported. We present now a quantitative model based on Hammett parameters that rationalizes the effect of the substituents on the properties of cyclometalated iridium(iii) complexes. This simple model allows predicting the apparent redox potentials as well as the electrochemical gap of homoleptic complexes based on phenylpyridine ligands with good accuracy. In particular, the model accounts for the unequal effect of the substituents on both the HOMO and the LUMO energy levels. Consequently, the model is used to anticipate the emission maxima of the corresponding complexes with improved reliability. We demonstrate in a series of phenylpyridine emitters that electron-donating groups can effectively replace electron-withdrawing substituents on the orthometallated phenyl to induce a blue shift of the emission. This result is in contrast with the common approach that uses fluorine to blue shift the emission maximum. Finally, as a proof of concept, we used electron-donating substituents to design a new fluorine-free complex, referred to as EB343, matching the various properties, namely oxidation and reduction potentials, electrochemical gap and emission profile, of the standard sky-blue emitter FIrPic.
虽然磷光环金属铱(iii)配合物已经得到了广泛的研究,但只有氧化电位 EOX 和哈米特常数 σ 之间,以及氧化还原间隙 (ΔEREDOX = EOX-ERED) 和发射或吸收波长 (λabs, λem) 之间的相关性已经被报道过。我们现在提出了一个基于哈米特参数的定量模型,该模型可以合理地解释取代基对环金属铱(iii)配合物性质的影响。这个简单的模型可以准确地预测基于苯并吡啶配体的同配位配合物的表观氧化还原电位和电化学间隙。特别是,该模型解释了取代基对 HOMO 和 LUMO 能级的影响是不相等的。因此,该模型被用于提高相应配合物发射最大值的可靠性。我们在一系列苯并吡啶发射体中证明,供电子基团可以有效地取代邻位金属化苯上的吸电子取代基,从而导致发射的蓝移。这一结果与常用的使用氟原子来蓝移发射最大值的方法形成了对比。最后,作为一个概念验证,我们使用供电子取代基设计了一种新的无氟配合物,称为 EB343,它与标准天蓝色发射体 FIrPic 的各种性质,即氧化还原电位、电化学间隙和发射谱相匹配。