School of Chemistry, Monash University, Clayton, Australia.
Dept of Chemistry & Physics La Trobe Institute for Molecular Science, La Trobe University, Melbourne, Australia.
Chempluschem. 2020 Feb;85(2):346-352. doi: 10.1002/cplu.201900637. Epub 2020 Feb 6.
We report the synthesis, photophysics, electrochemistry and electrochemiluminescence (ECL) of two dqp (dqp=2,6-di(quinoline-8-yl)pyridine) based ruthenium(II) complexes, bearing either a n-butyl ester (1) or the corresponding carboxylic acid functionality (2). The complexes were prepared from [Ru(dqp)(MeCN) ][PF ] by reaction with the dqp precursor using microwave irradiation. In both cases, photoluminescence spectra present strong MLCT-based red/near-infrared (NIR) emissions centred at about 710 nm. The photoluminescence quantum yields were 6.1 % and 1.8 % for 1 and 2 respectively while the excited state lifetimes were 3.60 μs and 2.37 μs. Both complexes are ECL active, although ECL efficiency (Φ ) of 1 was substantially higher than 2, due to its more favourable electrochemical properties. Importantly, 1 also gave strong ECL in aqueous media, which is rare for near-infrared emitters. The results suggest the possibility of very interesting ECL sensing applications for this class of emitter in biological media.
我们报告了两种基于二(8-喹啉基)吡啶(dqp)的钌(II)配合物的合成、光物理、电化学和电致化学发光(ECL),它们分别带有正丁酯(1)或相应的羧酸官能团(2)。这些配合物是通过微波辐射,用 dqp 前体与[Ru(dqp)(MeCN) ][PF ]反应制备的。在这两种情况下,光致发光光谱均呈现出强烈的基于 MLCT 的红色/近红外(NIR)发射,中心位于约 710nm。1 和 2 的荧光量子产率分别为 6.1%和 1.8%,而激发态寿命分别为 3.60μs 和 2.37μs。这两种配合物均具有 ECL 活性,但由于其更有利的电化学性质,1 的 ECL 效率(Φ)远高于 2。重要的是,1 在水相介质中也具有很强的 ECL,这在近红外发射器中很少见。这些结果表明,对于这类发射器在生物介质中的非常有趣的 ECL 传感应用具有可能性。