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采用Bphen和BCP制成双电子传输层(Doubleelectrontransportlayers, DETLs)的有机发光二极管器件, 与Bphen单独作ETL的器件相比, DETLs器件具有较小的空穴漏电流, 效率提升10%。与BCP独自作ETL的器件相比, 更多的电子注入使DETLs器件的效率在50~600mA/cm2的电流范围内没有衰减。BCP作ETL的器件的效率从50mA/cm2时的2.5cd/A衰减至300mA/cm2的2.1cd/A, 衰减了16%。Cs2CO3:BCP独自作ETL的器件效率在50~300mA/cm2的电流范围内衰减了30%, 而Bphen/Cs2CO3:BCP作DETLs的器件效率在50~600mA/cm2的电流范围内衰减幅度为0, 原因是Bphen阻挡了Cs原子扩散至发光层。 相似文献
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A liquid crystal Pancharatnam–Berry(PB) axilens is proposed and fabricated via a digital micro-mirrordevice-based photo-patterning system. The polarization-dependent device behaves as an axilens for a lefthanded circularly polarized incident beam, for which an optical ring is focused with a long focal depth in the transverse direction at the output, and an anti-axilens for a right-handed circularly polarized incident beam,for which an optical ring gradually expands at the output. The modification of the size and the sharpness of the diffracted ring beam is demonstrated by encoding a positive(negative) PB lens term into the director expression of a PB(anti-)axicon. 相似文献
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