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Annihilation electrogenerated chemiluminescence of mixed metal chelates in solution: modulating emission colour by manipulating the energetics

机译:湮灭混合金属螯合物在溶液中的电化学化学发光:通过操纵能量来调节发光颜色

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We demonstrate the mixed annihilation electrogenerated chemiluminescence of tris(2,2′-bipyridine)ruthenium( II ) with various cyclometalated iridium( III ) chelates. Compared to mixed ECL systems comprising organic luminophores, the absence of T-route pathways enables effective predictions of the observed ECL based on simple estimations of the exergonicity of the reactions leading to excited state production. Moreover, the multiple, closely spaced reductions and oxidations of the metal chelates provide the ability to finely tune the energetics and therefore the observed emission colour. Distinct emissions from multiple luminophores in the same solution are observed in numerous systems. The relative intensity of these emissions and the overall emission colour are dependent on the particular oxidized and reduced species selected by the applied electrochemical potentials. Finally, these studies offer insights into the importance of electronic factors in the question of whether the reduced or oxidized partner becomes excited in annihilation ECL.
机译:我们证明了具有各种环状氧化铱(III)螯合物的Tris(2,2'-Bibyridine)钌(II)的混合湮灭电流化学发光。与包含有机发光体的混合ECL系统相比,不存在T途径途径,可以基于对导致激发态产生的反应的exergonicity的简单估计来有效地预测观察到的ECL。此外,金属螯合物的多个紧密间隔的减少和氧化提供了精细调整能量的能力,从而提供了观察到的发光颜色。在许多系统中观察到同一溶液中多个发光体的明显排放。这些排放和整体发光颜色的相对强度取决于所施加的电化学电位选择的特定氧化和还原物种。最后,这些研究对电子因素在湮灭ECL中兴奋的问题中的重要性提供了洞察力。

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