化学
双极扩散
光致发光
晶体管
芴
光电子学
咔唑
量子效率
量子产额
载流子
聚合物
光化学
共聚物
电压
荧光
电子
有机化学
光学
材料科学
物理
量子力学
作者
Dafei Yuan,Mohammad A. Awais,Valerii Sharapov,Xunshan Liu,Andriy Neshchadin,Wei Chen,Luping Yu
摘要
The lack of design principle for developing high-performance polymer materials displaying strong fluorescence and high ambipolar charge mobilities limited their performance in organic light-emitting transistors (OLETs), electrically pumped organic laser, and other advanced electronic devices. A series of semiladder polymers by copolymerization of weak acceptors (TPTQ or TPTI) and weak donors (fluorene (F) or carbazole (C)) have been developed for luminescent and charge transporting properties. It was found that enhanced planarity, high crystallinity, and a delicate balance in interchain aggregation obtained in the new copolymer, TPTQ-F, contributed to high ambipolar charge mobilities and photoluminescent quantum yield. TPTQ-F showed excellent performance in solution-processed multilayered OLET devices with an external quantum efficiency (EQE) of 5.3%.
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