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从荧光-磷光复合结构的有机电致发光器件的研究入手,采用OXD-7作为蓝色荧光发光层,Ir(MDQ)2acac掺杂在母体材料作为红橙磷光发光层,设计制备了双波段白光有机电致发光器件。研究中发现,OXD-7,Alq3和NPB的三组分协同作用可以导致电致激基复合物的产生,以及由此导致的光谱红移,并使得器件发光效率降低。通过插入TDAF中间层可以有效地抑制激基复合物的产生,同时,通过控制载流子传输的平衡,以及磷光材料的掺杂浓度,可以获得器件发光亮度、效率的提升。  相似文献   
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In this work,we report the preparation of a series of electroluminescent(EL)devices based on a high-performance polymer,poly(p-phenylene benzobisoxazole)(PBO),and their optoelectronic properties,which have been rarely explored.The device structure is optimised using a complex cathode structure of tris-(8-hydoxyquinoline)aluminium(Alq3)/LiF/Al.By tuning the thickness of the Alq3layer,we improve the device efficiency dramatically in an optimized condition.Further analysis reveals that the Alq3layer in the complex cathode structure acts as a hole blocker in addition to its electron-injection role.A green light emission with a maximum brightness of 8.7×103cd/m2and a moderate current efficiency of 4.8 cd/A is obtained.These values are the highest ever reported for PBO devices.The high operational stability demonstrated by the present device makes it a promising tool for display and lighting applications.A new material is added to the selection of polymers used in this field up to now.  相似文献   
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