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Two-channel emission controlled by a conjugation valve for the color switching of thermally activated delayed fluorescence emission

机译:由共轭阀控制的双通道发射,用于热激活的延迟荧光发射的颜色切换

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The development of two-channel emission featuring deep-blue thermally activated delayed fluorescent (TADF) emitters is highly challenging due to their unavoidably extended conjugated structures. Herein, we propose a simple and effective strategy involving engineering of the interconnection position and formation of a "conjugation valve" to control their emission colors, including enabling emission of deep-blue light with an uncompromised external quantum efficiency (EQE). Two novel TADF emitters, namely 2,3 ',4,5 '-tetra(9H-carbazol-9-yl)-[1,1 '-biphenyl]-3,4 '-dicarbonitrile (34CzBN) and 3,3 ',5,5 '-tetra(9H-carbazol-9-yl)-[1,1 '-biphenyl]-4,4 '-dicarbonitrile (44CzBN), were developed to produce a two-channel-emission path by directly connecting two identical TADF units in two different ways to produce different degrees of conjugation. The non-conjugative mode of connection in 34CzBN resulted in severe steric hindrance at the central core, which interrupted the extensive conjugation and resulted in significant blue-shifts of the absorption and emission compared to those of its isomer 44CzBN. The two-channel-emission process provided a four-times higher EQE than the single-channel-emission process. The 34CzBN-based TADF device demonstrated deep-blue emission with color coordinates of (0.14, 0.14) due to a closed conjugation channel, and displayed an EQE of 15.2%. In contrast, the 44CzBN device showed green emission with color coordinates of (0.20, 0.44), due to the open conjugation channel, and an EQE of 13.8%. Additionally, the emission peak in the spectrum of the 34CzBN-based device became narrow (full width at half-maximum of similar to 63 nm) due to restricted molecular motion resulting from the interlocked carbazole donor at the central core.
机译:由于不可避免地延伸的共轭结构,双向蓝色热激活延迟荧光(TADF)发射器具有强大挑战的双通道发射的发展。这里,我们提出了一种简单有效的策略,涉及互连位置的工程和形成“共轭阀”以控制它们的发光颜色,包括使得具有未妥协的外部量子效率(EQE)的深蓝光发射。两种新型TADF发射器,即2,3',4,5'-Tetra(9h-咔唑-9-基) - [1,1' - 苯基] -3,4'-二羰基腈(34czBn)和3,3' ,5,5'-Tetra(9h-咔唑-9-基) - [1,1' - 苯基] -4,4'-4,4'-二羰基腈(44czBn)通过直接连接产生双通道排放路径两种相同的TADF单位以两种不同的方式产生不同程度的共轭。 34CZBN中的非共轭连接模式导致中央核心的严重空间障碍,其中断了广泛的缀合,并导致与其异构体44CzBN的吸收和排放产生显着的蓝色偏移。双通道排放过程提供了比单通道排放过程更高的4倍。基于34CzBN的TADF器件通过闭合的共轭通道表示,具有(0.14,0.14)的颜色坐标的深蓝色发射,并显示出15.2%的EQE。相反,44CZBN装置显示出具有(0.20,0.44)的颜色坐标的绿色发射,由于开放的共轭通道,EQE为13.8%。另外,由于互锁的咔唑供体在中央芯处,由于限制的分子运动,基于34CzBN的装置的光谱中的发射峰值变窄(半最大宽度为63nm)。

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