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Pure Deep Blue Light-Emitting Diodes from Alternating Fluorene/ Carbazole Copolymers by Using Suitable Hole-Blocking Materials

机译:通过使用合适的空穴阻止材料,由交替的芴/咔唑共聚物制成的纯深蓝色发光二极管

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摘要

The influences of the carbazole content on the photophysical,electrochemical,and electroluminescent properties of alternating fluorene/carbazole copolymers PFnCz (n=1,2,3) with well-defined chemical structures have been systematically investigated.The incorporation of carbazole units into the polyfluorene (PF) backbone resulted in a blue shift of both the absorption and photoluminescence (PL) emission peaks,improved PL thermal stability,raised HOMO energy levels,and thus facilitated hole injection into the copolymers.Pure deep blue electroluminescence (EL) with narrow fwhms (full width at the half-maximum) (39-52 nm) and negligible low-energy emission bands was successfully achieved from the PFnCz copolymers by using l,3,5-tris(4'-fluorobiphenyl-4-yl)benzene (F-TBB) as a hole-blocking layer and Alqa as an electron injection/transporting layer.This device configuration stabilized the blue emission from the PF derivatives.An efficiency of 0.72 cd/A at a luminance of 100 cd/m~2 was obtained even with aluminum metal as the cathode.
机译:系统研究了咔唑含量对具有明确化学结构的芴/咔唑交替共聚物PFnCz(n = 1,2,3)的光物理,电化学和电致发光性能的影响。将咔唑单元并入聚芴中(PF)主链导致吸收和光致发光(PL)发射峰均发生蓝移,改善了PL热稳定性,提高了HOMO能级,从而促进了向共聚物中的空穴注入。纯的深蓝色电致发光(EL)具有窄的分子量PFnCz共聚物通过使用1,3,5-三(4'-氟联苯-4-基)苯成功地实现了(半峰全宽)(39-52 nm)和低能谱的低能发射带( F-TBB)作为空穴阻挡层,Alqa作为电子注入/传输层。该器件配置稳定了PF衍生物的蓝光发射。在100 cd / m〜2的亮度下,效率为0.72 cd / A。获得甚至使用铝金属作为阴极。

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