Dorn Matthias, Kalmbach Jens, Boden Pit, Päpcke Ayla, Gómez Sandra, Förster Christoph, Kuczelinis Felix, Carrella Luca M, Büldt Laura A, Bings Nicolas H, Rentschler Eva, Lochbrunner Stefan, González Leticia, Gerhards Markus, Seitz Michael, Heinze Katja
Department of Chemistry, Johannes Gutenberg University of Mainz, Duesbergweg 10-14, Mainz 55128, Germany.
Institute of Inorganic Chemistry, University of Tübingen, Auf der Morgenstelle 18, Tübingen 72076, Germany.
J Am Chem Soc. 2020 Apr 29;142(17):7947-7955. doi: 10.1021/jacs.0c02122. Epub 2020 Apr 16.
Luminescence from Earth-abundant metal ions in solution at room temperature is a very challenging objective due to the intrinsically weak ligand field splitting of first-row transition metal ions, which leads to efficient nonradiative deactivation via metal-centered states. Only a handful of 3d metal complexes ( ≠ 10) show sizable luminescence at room temperature. Luminescence in the near-infrared spectral region is even more difficult to achieve as further nonradiative pathways come into play. No Earth-abundant first-row transition metal complexes have displayed emission >1000 nm at room temperature in solution up to now. Here, we report the vanadium(III) complex -[V(ddpd)][PF] yielding phosphorescence around 1100 nm in valeronitrile glass at 77 K as well as at room temperature in acetonitrile with 1.8 × 10% quantum yield (ddpd = ,'-dimethyl-,'-dipyridine-2-ylpyridine-2,6-diamine). In addition, -[V(ddpd)][PF] shows very strong blue fluorescence with 2% quantum yield in acetonitrile at room temperature. Our comprehensive study demonstrates that vanadium(III) complexes with d electron configuration constitute a new class of blue and NIR-II luminophores, which complement the classical established complexes of expensive precious metals and rare-earth elements.
由于第一排过渡金属离子固有的弱配体场分裂,导致通过金属中心态进行有效的非辐射失活,因此在室温下从溶液中富含地球的金属离子发出的发光是一个非常具有挑战性的目标。只有少数几种3d金属配合物(≠10)在室温下显示出可观的发光。由于更多非辐射途径的作用,在近红外光谱区域实现发光甚至更加困难。到目前为止,还没有富含地球的第一排过渡金属配合物在室温下于溶液中显示出大于1000 nm的发射。在此,我们报道了钒(III)配合物-[V(ddpd)][PF],在77 K下于戊腈玻璃中以及在室温下于乙腈中以1.8×10%的量子产率产生约1100 nm的磷光(ddpd = ,'-二甲基-,'-二吡啶-2-基吡啶-2,6-二胺)。此外,-[V(ddpd)][PF]在室温下于乙腈中以2%的量子产率显示出非常强的蓝色荧光。我们的综合研究表明,具有d电子构型的钒(III)配合物构成了一类新型的蓝色和近红外二区发光体,它补充了昂贵的贵金属和稀土元素的经典既定配合物。