University of New Brunswick , Department of Chemistry , Fredericton , New Brunswick E3B 5A3 , Canada.
School of Physical Sciences , University of Kent , Canterbury CT2 7NH , United Kingdom.
Inorg Chem. 2018 Jul 16;57(14):8581-8587. doi: 10.1021/acs.inorgchem.8b01326. Epub 2018 Jul 3.
The use of a new second-sphere coordination methodology for emission color tuning of iridium complexes is presented. We demonstrate that a complementary H-bonding guest molecule binding through contiguous triple H-bonding interactions can induce a shift in the emission of the iridium complex from green to blue without the need to alter the ligand structure around the metal center, while simultaneously increasing the photoluminescence quantum yield in solution. The association constant for this host-guest interaction was determined to be K = 4.3 × 10 M in a solution of 2% dimethyl sulfoxide in chloroform by UV-vis titration analysis and the impact of the hydrogen bonding interaction further probed by photoluminescence, electrochemical, and computational methods. Our findings suggest that directed self-assemblies are an effective approach to influencing emission properties of phosphorescent iridium(III) complexes.
本文提出了一种新的第二配位球方法,用于调节铱配合物的发射颜色。我们证明,通过连续的三氢键相互作用结合的互补氢键供体分子可以在不改变金属中心配体结构的情况下,将铱配合物的发射从绿色转移到蓝色,同时增加溶液中的光致发光量子产率。通过紫外-可见滴定分析,在二甲基亚砜体积分数为 2%的氯仿溶液中,该主体-客体相互作用的结合常数确定为 K = 4.3 × 10 M,通过光致发光、电化学和计算方法进一步探究了氢键相互作用的影响。我们的研究结果表明,定向自组装是一种有效调节磷光铱(III)配合物发射性质的方法。