Gneuß Timo, Leitl Markus J, Finger Lars H, Yersin Hartmut, Sundermeyer Jörg
Philipps-Universität Marburg, Materials Science Centre and Fachbereich Chemie, Hans-Meerwein-Straße 4, 35032 Marburg, Germany.
Universität Regensburg, Institut für Physikalische und Theoretische Chemie, Universitätsstr. 31, 93053, Regensburg, Germany.
Dalton Trans. 2015 Dec 14;44(46):20045-55. doi: 10.1039/c5dt03065j.
Three deep blue emitting Cu(I) compounds, [Cu(PPh3)tpym]PF6, [Cu(PPh3)tpym]BF4, and [Cu(PPh3)tpym]BPh4 (tpym = tris(2-pyridyl)methane, PPh3 = triphenylphosphine) featuring the tripodally coordinating tpym and the monodentate PPh3 ligands were studied with regard to their structural and photophysical properties. The compounds only differ in their respective counter ions which have a strong impact on the emission properties of the powder samples. For example, the emission quantum yield can be significantly increased for the neat material from less than 10% to more than 40% by exchanging BPh4(-) with PF6(-). These effects can be linked to different molecular packings which depend on the counter ion. In agreement with these results, it was found that the emission properties also strongly depend on the surrounding matrix environment which was elucidated by investigating photophysical properties of the compounds as powders, doped into a polymer matrix, and dissolved in a fluid solution, respectively. The observed differences in the emission behavior can be explained by different and pronounced distortions that occur in the excited state. These distortions are also displayed by density functional theory (DFT) calculations.
研究了三种深蓝色发光铜(I)化合物,[Cu(PPh3)tpym]PF6、[Cu(PPh3)tpym]BF4和[Cu(PPh3)tpym]BPh4(tpym = 三(2 - 吡啶基)甲烷,PPh3 = 三苯基膦),它们具有三脚架配位的tpym和单齿PPh3配体,研究了其结构和光物理性质。这些化合物仅在各自的抗衡离子上有所不同,而抗衡离子对粉末样品的发射性质有很大影响。例如,通过用PF6(-)交换BPh4(-),纯材料的发射量子产率可以从不到10%显著提高到超过40%。这些效应可以与取决于抗衡离子的不同分子堆积联系起来。与这些结果一致,发现发射性质也强烈依赖于周围的基质环境,这通过分别研究化合物作为粉末、掺杂到聚合物基质中以及溶解在流体溶液中的光物理性质得以阐明。发射行为中观察到的差异可以用激发态中发生的不同且明显的畸变来解释。这些畸变也通过密度泛函理论(DFT)计算得以体现。