期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于七元环三芳胺给体的蓝光热活化延迟荧光材料的构筑
1
作者 李治 李祯龙 +3 位作者 刘俊杰 卫国 游劲松 宾正杨 《有机化学》 SCIE CAS CSCD 北大核心 2024年第6期2006-2013,共8页
设计合成高效发光材料对于蓝光有机发光二极管(OLED)的进一步研究和应用至关重要.以扭曲七元环结构的9H-三苯并[b,d,f]氮杂䓬(TPA)为给体,设计合成了两种新型蓝光发光分子TRZCz-TPA和TRZ-TPA,并对它们的热稳定性、电化学性质、光物理性... 设计合成高效发光材料对于蓝光有机发光二极管(OLED)的进一步研究和应用至关重要.以扭曲七元环结构的9H-三苯并[b,d,f]氮杂䓬(TPA)为给体,设计合成了两种新型蓝光发光分子TRZCz-TPA和TRZ-TPA,并对它们的热稳定性、电化学性质、光物理性质和器件性能等进行了表征.光谱研究表明,TRZCz-TPA和TRZ-TPA均为蓝光发射,其甲苯溶液中的发射波长分别为455和440 nm.和TRZ-TPA分子不同的是,TRZCz-TPA的受体邻位引入3,6-二叔丁基咔唑(tBuCz),产生较大的空间位阻,使得二苯基三嗪(TRZ)受体构型扭曲,与苯环π-桥平面存在较大二面角,从而最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)分别转移到tBuCz给体和TRZ受体上,其发光性质由TPA给体到TRZ受体的沿键电荷转移特性(TBCT)转变为tBuCz给体到TRZ受体的空间电荷转移特性(TSCT),单三线态能隙(ΔEST)从0.53 eV显著降至0.04 eV,具有热活化延迟荧光(TADF)性质.此外,大位阻的tBuCz给体可以降低聚集态下的发光猝灭现象,因此,TRZCz-TPA掺杂薄膜的光致发光量子产率(PLQY)为42.0%,掺杂器件的最大外量子效率(EQEmax)为10.4%,而TRZ-TPA的PLQY和EQEmax仅为6.5%和3.7%. 展开更多
关键词 有机发光二极管 热活化延迟荧光 沿键电荷转移 空间电荷转移 七元环三芳胺给体
原文传递
Hydrogen bond modulation in 1,10-phenanthroline derivatives for versatile electron transport materials with high thermal stability,large electron mobility and excellent n-doping ability 被引量:3
2
作者 Zhengyang Bin Diyuan Shi +3 位作者 Rongchuan Su Weiguo Han Dongdong Zhang Lian Duan 《Science Bulletin》 SCIE EI CAS CSCD 2020年第2期153-160,88,共9页
4,7-Bisphenyl-1,10-phenanthroline(BPhen)is a promising electron transport material(ETM)and has been widely used in organic light-emitting diodes(OLEDs)because of the large electron mobility and easy fabrication proces... 4,7-Bisphenyl-1,10-phenanthroline(BPhen)is a promising electron transport material(ETM)and has been widely used in organic light-emitting diodes(OLEDs)because of the large electron mobility and easy fabrication process.However,its low glass transition temperature would lead to poor device stability.In the past decades,various attempts have been carried out to improve its thermal stability though always be accomplished by the reduced electron mobility.Here,we present a molecular engineering to modulate the properties of BPhen,and through which,a versatile BPhen derivative(4,7-bis(naphthaleneb-yl)-1,10-phenanthroline,b-BNPhen)with high thermal stability(glass transition temperature=111.9℃),large electron mobility(7.8×10-4 cm2/(V s)under an electrical field of 4.5×105 V/cm)and excellent n-doping ability with an air-stable metal of Ag is developed and used as multifunctional layers to improve the efficiency and enhance the stability of OLEDs.This work elucidates the great importance of our molecular engineering methodology and device structure optimization strategy,unlocking the potential of 1,10-phenanthroline derivatives towards practical applications. 展开更多
关键词 PHENANTHROLINE Electron transport material N-DOPING EXCIPLEX Organic LIGHT-EMITTING diodes
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部