材料科学
激子
光电子学
电致发光
有机半导体
活动层
光致发光
量子效率
半导体
晶体管
载流子
有机发光二极管
电子迁移率
兴奋剂
图层(电子)
纳米技术
薄膜晶体管
电压
电气工程
物理
工程类
量子力学
作者
Can Gao,Atul Shukla,Haikuo Gao,Zhagen Miao,Yihan Zhang,Pu Wang,Guiwen Luo,Yi Zeng,Wallace W. H. Wong,Trevor A. Smith,Shih‐Chun Lo,Wenping Hu,Ebinazar B. Namdas,Huanli Dong
标识
DOI:10.1002/adma.202208389
摘要
Abstract Organic light‐emitting transistors (OLETs), a kind of highly integrated and minimized optoelectronic device, demonstrate great potential applications in various fields. The construction of high‐performance OLETs requires the integration of high charge carrier mobility, strong emission, and high triplet exciton utilization efficiency in the active layer. However, it remains a significant long‐term challenge, especially for single component active layer OLETs. Herein, the successful harvesting of triplet excitons in a high mobility emissive molecule, 2,6‐diphenylanthracene (DPA), through the triplet‐triplet annihilation process is demonstrated. By incorporating a highly emissive guest into the DPA host system, an obvious increase in photoluminescence efficiency along with exciton utilization efficiency results in an obvious enhancement of external quantum efficiency of 7.2 times for OLETs compared to the non‐doped devices. Moreover, well‐tunable multi‐color electroluminescence, especially white emission with Commission Internationale del'Eclairage of (0.31, 0.35), from OLETs is also achieved by modulating the doping concentration with a controlled energy transfer process. This work opens a new avenue for integrating strong emission and efficient exciton utilization in high‐mobility organic semiconductors for high‐performance OLETs and advancing their related functional device applications.
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