首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Ultralong organic luminogens with color-tunabilityviaintermolecular through-space charge-transfer characters
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Ultralong organic luminogens with color-tunabilityviaintermolecular through-space charge-transfer characters

机译:具有颜色可调性的超级有机发光蛋白通过空间通过空间电荷转移字符

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摘要

Currently, the majority of ultralong organic luminescence (UOL) materials show an undiversified color of yellow with a vibrational-structured spectrum [lambda(UOL): similar to 550 nm; shoulders: similar to 600 and similar to 650 nm]. Herein, we demonstrate that the radiative deactivation of singlet and/or triplet excitons showing an intermolecular through-space charge-transfer (I-TSCT) character can also result in UOL. With the aid of their CT feature of the long-lived excited state, the emission color of UOL materials based on this mechanism can be fine-tuned rationally. Using this constructive strategy, compoundsCzSOand beta-CbSOwith lambda(UOL)of 490 nm and 460 nm, respectively, have been acquired successfully. Note that the UOL ofCzSOhas a long lifetime of 0.45 s together with a quantum efficiency over 26% under visible-light excitation at 440 nm. Moreover, thanks to its ground-state CT character, bright two-photon excited UOL is also observed in crystallineCzSOunder near-infrared (NIR) excitation at 840 nm.
机译:目前,大多数超龙有机发光(UOL)材料显示出毫无衍生的黄色,具有振动结构的光谱[Lambda(UOL):类似于550nm;肩膀:类似于600,类似于650 nm]。在此,我们证明了单态的辐射失活和/或三重态激子显示分子间通过空间电荷转移(I-TSCT)特征也可以导致UOL。借助于他们的长期兴奋状态的CT特征,基于该机制的UOL材料的发光颜色可以合理地微调。使用该建设性策略,分别成功地获得了490nm和460nm的化合物柔佛β-cbsoyλ(UOL)。注意,UOL OFCZSOHA在440nm处的可见光激发下的量子效率为0.45秒,具有超过26%的量子效率。此外,由于其地态CT特性,在840nm处的晶体印象近红外(NIR)激发中还观察到明亮的双光子兴奋UOL。

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