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Fluorescent polymer guest:small molecule host solution-processed OLEDs

机译:荧光聚合物客体:小分子主体溶液处理的OLED

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Solution-processed OLEDs with polymer hosts and polymer or small-molecule guests have been studied extensively. More recently, efficient solution-processed OLEDs with small molecule hosts and small molecule guests were also reported. However, small molecule hosts of polymer guests in solution-processed fluorescent OLEDs have not been investigated. In this work guesthost systems consisting of the small molecule 4,4~'-bis(9-carbazolyl)-biphenyl (CBP) as host to polymer guests such as novel benzobisoxazole (BBO)-containing copolymers and well-known poly(2-methoxy-5-(2~'-ethyl-hexyloxy)1,4-phenylene vinylene) (MEH-PPV) are compared to those with poly(N-vinyl carbazole) (PVK) host, which previously yielded highly efficient phosphorescent OLEDs. In the case of MEH-PPV, guesthost OLEDs are also compared to those with a neat MEH-PPV emitting layer. It is found that replacing the polymer host PVK with the small molecule host CBP improves efficiencies by up to 100%. A blue emissive BBO-polymer:CBP device reaches a luminous efficiency (η_(L,mxa)) of 3.4 cd A~(-1) (external quantum efficiency η_(ext) — 2.4%), while the PVK-based device exhibits η_(L,max) = 1.7 cd A~(-1) (η_(ext) = 1.2%). A green emissive BBO:CBP OLED exhibits η_(L,max) = 5.7 cd A~(-1) (η_(ext) = 2.1%), while that in the PVK host is 3.1 cd A~(-1) (η_(ext) = 1.1%). For MEH-PPV:CBP these values are 3.7 cd A~(-1) (η_(ext) = 1.4%), compared to 2.9 cd A~(-1) (η_(ext) = 1.0%) for MEH-PPV:PVK and 0.7 cd A~(-1) (η_(ext) = 0.4%) for the neat MEH-PPV device. Possible origins of the improvement are discussed, including increased charge mobility, smoother film morphology, and the potential effect of multiple non-coiling host small molecules (in contrast to the likely coiled PVK) surrounding a polymer guest.
机译:具有聚合物主体和聚合物或小分子客体的溶液处理OLED已被广泛研究。最近,还报道了具有小分子主体和小分子客体的高效溶液处理的OLED。但是,尚未研究溶液处理的荧光OLED中聚合物客体的小分子主体。在这项工作中,客体系统由小分子4,4''-双(9-咔唑基)-联苯(CBP)作为聚合物客体的主体,例如新型含苯并双恶唑(BBO)的共聚物和众所周知的聚(2-将甲氧基-5-(2''-乙基-己氧基)1,4-亚苯基亚乙烯基)(MEH-PPV)与具有聚(N-乙烯基咔唑)(PVK)主体的那些进行了比较,后者以前产生了高效的磷光OLED。对于MEH-PPV,也将来宾主机OLED与具有纯MEH-PPV发射层的OLED进行比较。发现用小分子主体CBP代替聚合物主体PVK可将效率提高多达100%。蓝色的BBO聚合物:CBP发光器件的发光效率(η_(L,mxa))为3.4 cd A〜(-1)(外部量子效率η_(ext)-2.4%),而基于PVK的器件表现出η_(L,max)= 1.7 cd A〜(-1)(η_(ext)= 1.2%)。绿色的BBO:CBP发光OLED的η_(L,max)= 5.7 cd A〜(-1)(η_(ext)= 2.1%),而在PVK主机中的发射值为3.1 cd A〜(-1)(η_ (ext)= 1.1%)。对于MEH-PPV:CBP,这些值为3.7 cd A〜(-1)(η_(ext)= 1.4%),而对于MEH-PPV:2.9 cd A〜(-1)(η_(ext)= 1.0%) :纯净的MEH-PPV装置的PVK为0.7 cd A〜(-1)(η_(ext)= 0.4%)。讨论了改进的可能来源,包括增加的电荷迁移率,更平滑的薄膜形态以及围绕聚合物客体的多个非卷曲主体小分子(与可能的卷曲PVK相反)的潜在影响。

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