材料科学
刚度(电磁)
灵活性(工程)
光电子学
频道(广播)
共发射极
激子
电信
计算机科学
复合材料
凝聚态物理
数学
统计
物理
作者
Guowei Chen,Wen‐Cheng Chen,Yaozu Su,Ruicheng Wang,Jia‐Ming Jin,Hui Liang,Bingxue Tan,Dehua Hu,Shaomin Ji,Hao‐Li Zhang,Yanping Huo,Yuguang Ma
标识
DOI:10.1016/j.cej.2023.147616
摘要
An intramolecular dual-locking design is proposed for organic luminescent materials, aiming at synergistically adjusting the molecular rigidity and flexibility for applications in data storage and light-emitting devices. According to this concept, a multifunctional donor–acceptor type emitter, LPCz-TRZ, is developed, featuring a “soft” diphenylmethane lock and a “hard” single-bond lock in its donor moiety. The highly locked structure results in appreciable rigidity that endows LPCz-TRZ with high luminescence efficiency, narrow emission, promoted charge conductivity and triplet harvesting “hot exciton” channels, allowing high-performance deep-blue organic light-emitting diodes (OLEDs) with an external quantum efficiency as high as 7.88%, which is among the best deep-blue “hot exciton” OLEDs. Notably, the structure of LPCz-TRZ is semi-flexible, leading to unique mechanochromic luminescence (MCL) behavior. Compared to the conventional MCL emitters, the orchestration of rigidity and flexibility in LPCz-TRZ affords high-contrast, fatigue-resistance MCL, as evidenced by a simple, rewritable data-recording demonstration with negligible fatigue after up to 15 wiring-erasing cycles.
科研通智能强力驱动
Strongly Powered by AbleSci AI