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Cyclometalated iridium(III) chelates—a new exceptional class of the electrochemiluminescent luminophores

机译:环金属化铱(III)螯合物-一种新型的电化学发光发光体

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摘要

Recent development of the phosphorescent cyclometalated iridium(III) chelates has enabled, due to their advantageous electrochemical and photo-physical properties, important breakthroughs in many photonic applications. This particular class of 5d6 ion complexes has attracted increasing interest because of their potential application in electroluminescence devices with a nearly 100 % internal quantum efficiency for the conversion of electric energy to photons. Similar to electroluminescence, the cyclometalated iridium(III) chelates have been successfully applied in the electricity-to-light conversion by means of the electrochemiluminescence (ECL) processes. The already reported ECL systems utilizing the title compounds exhibit extremely large ECL efficiencies that allow one to envisage many potential application for them, especially in further development of ECL-based analytical techniques. This review, based on recently published papers, focuses on the ECL properties of this very exciting class of organometallic luminophores. The reported work, describing results from fundamental as well as application-oriented investigations, will be surveyed and briefly discussed.>Graphical abstractDepending on the chemical nature of the cyclometalated irdium(III) chelate different colours of the emitted light can be produced during electrochemical excitation.
机译:磷光环金属化铱(III)螯合物的最新开发由于其优越的电化学和光物理性质,已在许多光子应用中取得了重要突破。这种特殊的5d 6 离子络合物吸引了越来越多的关注,因为它们潜在地应用在电致发光器件中,其内部量子效率接近100%,可以将电能转化为光子。与电致发光类似,环金属化的铱(III)螯合物已通过电致发光(ECL)工艺成功应用于电光转换。已经报道的利用标题化合物的ECL系统表现出极大的ECL效率,这使人们可以设想到它们的许多潜在应用,特别是在基于ECL的分析技术的进一步发展中。这篇综述基于最近发表的论文,着眼于这一令人兴奋的有机金属发光体类的ECL特性。报告的工作描述了基础研究以及面向应用程序的研究结果,将进行调查和简要讨论。<!-fig ft0-> <!-fig @ position =“ anchor” mode = article f4-> <!-fig mode =“ anchored” f5-> >图形摘要<!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->取决于环金属化的铱(III)螯合物的化学性质,在电化学激发期间可以产生不同颜色的发射光。

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