Sikora Philipp, Naumann Robert, Förster Christoph, Heinze Katja
Johannes Gutenberg University Mainz Duesbergweg 10-14 55128 Mainz Germany
Chem Sci. 2023 Jan 30;14(10):2489-2500. doi: 10.1039/d2sc06984a. eCollection 2023 Mar 8.
Great progress has been achieved on phosphorescent or photoactive complexes of the Earth-abundant transition metals, while examples for phosphorescent heavy main group element complexes are rare, in particular for group 14 complexes in the oxidation state +II. The known compounds often show only weak phosphorescence with fast non-radiative deactivation. The underlying photophysical processes and the nature of the phosphorescent electronic states have remained essentially unexplored. The present combined photophysical and theoretical study on tin(ii) and lead(ii) complexes E(bpep) with the dianionic tridentate ligand bpep (E = Sn, Pb; Hbpep = 2-[1,1-bis(1-pyrrol-2-yl)ethyl]pyridine) provides unprecedented insight in the excited state energy landscape of tetrel(ii) complexes. The tin complex shows green intraligand charge transfer (ILCT) phosphorescence both in solution and in the solid state. In spite of its larger heavy-atom effect, the lead complex only shows very weak red phosphorescence from a strongly distorted ligand-to-metal charge transfer (LMCT) state at low temperatures in the solid state. Detailed (TD-)DFT calculations explain these observations and delineate the major path of non-radiative deactivation distorted LMCT states. These novel insights provide rational design principles for tetrel(ii) complexes with long-lived phosphorescence.
在储量丰富的过渡金属的磷光或光活性配合物方面已经取得了巨大进展,而磷光重主族元素配合物的例子却很少,特别是氧化态为 +II 的第 14 族配合物。已知的化合物通常仅表现出微弱的磷光且具有快速的非辐射失活。潜在的光物理过程和磷光电子态的性质基本上仍未被探索。目前对具有双阴离子三齿配体 bpep 的锡(II)和铅(II)配合物 E(bpep)(E = Sn,Pb;Hbpep = 2-[1,1-双(1-吡咯-2-基)乙基]吡啶)进行的光物理和理论联合研究,为四价金属(II)配合物的激发态能量格局提供了前所未有的见解。锡配合物在溶液和固态中均显示出绿色的配体内电荷转移(ILCT)磷光。尽管铅配合物具有更大的重原子效应,但在固态中仅在低温下从强烈扭曲的配体到金属电荷转移(LMCT)态显示出非常微弱的红色磷光。详细的(TD-)DFT 计算解释了这些观察结果,并描绘了非辐射失活的主要途径——扭曲的 LMCT 态。这些新颖的见解为具有长寿命磷光的四价金属(II)配合物提供了合理的设计原则。