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Multicolor Circularly Polarized Photoluminescence and Electroluminescence with 1,2-Diaminecyclohexane Enantiomers

机译:用1,2-二氨基癸烷己烷对映体的多色圆偏振光和电致发光

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摘要

Development of simple chiral materials with tunable circularly polarized photoluminescence (CPPL) and circularly polarized electroluminescence (CPEL) for efficient circularly polarized organic light-emitting diodes (CP-OLEDs) is the key toward future 3D displays. In this study, four pairs of chiral 1,2-diaminocyclohexane-based fluorescence enantiomers were efficiently prepared with high yields (up to 92%) and enantiomeric excesses (ee >99%). By the introduction of N-methyl, carbazole, and diphenylamine-donating groups, these materials showed multicolor CPPL and CPEL from blue (420 nm) to red (610 nm) with good thermal and conformational stability. The multilayer CP-OLEDs based on these enantiomers show high external quantum efficiency of up to 5.5% with low-efficiency roll-off and microimage circularly polarized electroluminescence with a dissymmetry factor (g(EL)) of up to -1.4 x 10(-3)/+1.3 x 10(-3). These results push forward the development of future multicolor circularly polarized electroluminescent materials.
机译:具有可调谐圆极化光致发光(CPPL)的简单手性材料的开发和用于有效圆偏振的有机发光二极管(CP-OLED)的圆偏振电致发光(CPEL)是未来3D显示器的关键。在该研究中,用高产率(高达92%)和对映体过量(EE> 99%)有效制备四对基于手性1,2-二氨基环己烷基荧光对映体。通过引入N-甲基,咔唑和二苯胺给予基团,这些材料显示了来自蓝色(420nm)的多色CPPL和CPEL,以良好的热和构象稳定性地向红色(610nm)。基于这些对映异构体的多层CP-OLEDS显示出高达5.5%的高效率,低效率滚降和微磁性圆偏振的电致发光,其不对称因子(G(EL))高达-1.4×10( - 3)/ + 1.3 x 10(-3)。这些结果推进了未来多色圆偏振电致发光材料的发展。

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