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首页> 外文期刊>Bulletin of Japan Society of Coordination Chemistry >錯体化学を基とする開殻電子系分子の光機能創出
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錯体化学を基とする開殻電子系分子の光機能創出

机译:基于复杂化学的开放壳电子分子的功能创建

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Stable radicals possessing open-shell electronic states exhibit vivid physical properties such as electric conductivity and magnetism attributed to unpaired electrons. Their luminescent properties, however, have been poorly investigated due to the rarity and low chemical stability in their photoexcited states. I have developed highly-photostable luminescent organic radicals as promising candidates for establishing novel photofunctions based on the doublet (or multiplet) state. I have shown that the coordination to metal ions can increase the emission quantum yield and photostability of the radicals. The absence of heavy atom effect has been suggested as a unique character of doublet-based fluorescence. These findings show that coordination chemistry is an efficient strategy to enhance, vary, or elucidate the photofunctions of radicals, and enables to extend the scope of this class of radicals toward molecular photonics.
机译:具有开放式电子状态的稳定的自由基表现出生动的物理性质,例如归因于未配对电子的电导率和磁性。然而,它们的发光特性由于其运动态势中的罕见和低化学稳定性而被调查得很差。我开发了高度光稳定的发光有机自由基,作为基于双峰(或多重)状态的建立新型光缺失的候选者。我已经表明,对金属离子的协调可以增加自由基的发射量子产率和光稳定性。已经提出了缺乏重症的原子效应作为基于双重的荧光的独特特征。这些发现表明,协调化学是一种有效的策略,可以增强,改变或阐明自由基的光折杂,并且能够将该类自由基的范围扩展到分子光子。

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