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An Effective Strategy to Construct Highly Efficient Deep‐Blue Organic Light‐Emitting Field‐Effect Transistors

机译:构建高效深蓝色有机发光场效应晶体管的有效策略

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> The fabrication of highly efficient deep‐blue organic light‐emitting field‐effect transistors (OLEFETs) remains a challenge due to the large energy bandgap of deep‐blue emitters. In this work, an effective strategy is developed by combining an ambipolar charge transport material with an efficient deep‐blue fluorescent emitter that features the hybridized local and charge‐transfer (HLCT) excited state character in a trilayer device architecture. The ambipolar nature of charge transport material endows the device with a relatively high hole–electron recombination efficiency, while the HLCT excited state character of the emitter offers the device a high singlet exciton yield. The device exhibits a maximum brightness of 710 cd m ?2 and a maximum external quantum efficiency (EQE) of 0.28%, which is the first example of deep‐blue OLEFETs. Unlike conventional OLEFETs, the devices presented herein display high EQEs during almost the entire illumination. The EQE of device at the maximum brightness reaches 0.20%, which is the highest value among the reported blue OLEFETs. Moreover, the device exhibits an excellent color purity with a sharp emission peak at 445 nm, a narrow full‐width at half‐maximum of 58 nm, and a Commission Internationale de l'Eclairage coordinates of (0.15, 0.06) that is very close to the National Television System Committee standard blue (0.14, 0.08).
机译: > 由于深蓝色发射器的大能量带隙,高效的深蓝色有机发光场效应晶体管(OLEFET)的制造仍然是一个挑战。在这项工作中,通过将Ambolar Charion Transport材料与高效的深蓝色荧光发射器组合,通过在三层设备架构中具有杂交的局部和电荷转移(HLCT)激发状态字符来开发有效的策略。电荷输送材料的Ambipolar性质以相对高的孔 - 电子复合效率赋予该装置,而发射器的HLCT激发状态特征提供了高分子Exciton产率的高态度。该装置呈现最大亮度为710cd m ?2 最大外部量子效率(EQE)为0.28%,这是深蓝色OLEFET的第一例。与传统的OLEFET不同,本文呈现的设备在几乎在整个照明期间显示高EQES。最大亮度的设备的EQE的EQE达到0.20%,这是报告的蓝色OLET之间的最高值。此外,该装置具有优异的色彩纯度,在445nm处具有急剧发射峰,半最大宽度为58 nm,委员会的Internationale de l'EnlaRige(0.15,0.06)非常接近向国家电视系统委员会标准蓝(0.14,0.08)。

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