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Flexible, polymer gated, AC-driven organic electroluminescence devices

机译:柔性,聚合物门控,交流有机电致发光器件

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Comparing rigid inorganic layer, polymeric semiconducting gate layer exhibits superior flexibility as well as efficient carrier manipulation in high frequency AC cycles. Mechanism of the carrier manipulation at the gate in forward and reversed bias of AC cycle is studied. The flexible PET-based AC-OEL device with poly[(9,9-bis(3'-((N,N-dimethyl)-N-ethylammonium)-propyl)-2,7-fluorene)-alt-2,7-(9,9-dioctylfluorene)] (PFN-Br) gate shows a stable electroluminescent performance in frequency sweep with a color rendering index (CRI) over 81 at 2800K color temperature.
机译:比较刚性无机层,聚合物半导体栅极层表现出优异的柔韧性以及高频AC循环中的有效载体操纵。研究了AC循环前进和反转偏置的栅极处的载波操纵机理。具有聚合物的柔性PET的AC-osel装置[(9,9-双(3' - ((N,N-二甲基)-N-乙基铵) - 丙基)-2,7-芴)-2, 7-(9,9-二辛基氟烯)](PFN-BR)栅极显示出频率扫描的稳定电致发光性能,在2800K色温下具有81上的显色指数(CRI)。

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