Xie Dong-Dong, Liao Hao-Sen, Wang Bao-Yue, Chen Dong, Chi Hai-Jun, Lv Yan-Li, Dong Yan, Li Xiao
School of Chemical Engineering, University of Science and Technology Liaoning, Anshan, 114051, People's Republic of China E-mail: address.
Chemistry. 2024 May 28;30(30):e202400121. doi: 10.1002/chem.202400121. Epub 2024 Apr 23.
It is vital to develop highly efficient non-doped blue organic light-emitting diodes (OLEDs) with high color purity and low-efficiency roll-off for applications in display and lighting. Herein, two blue D-A fluorophores TPA-PO and TPA-DPO are designed and synthesized, in which phenanthro[9,10-d]oxazole (PO) acts as the acceptor and triphenylamine as the donor. TPA-PO and TPA-DPO display good thermal stability and efficient luminescence efficiency in neat film. Results based on photophysical property and theoretical calculation demonstrate that TPA-PO and TPA-DPO possess the hybridized local and charge-transfer (HLCT) feature, which can utilize the triplet exciton to achieve highly efficient electroluminance (EL). The non-doped OLEDs with TPA-PO/TPA-DPO as pure emissive layer show the uniform EL emission peak at 468 nm, corresponding to CIE coordinates of (0.168, 0.187) and (0.167, 0.167), respectively. The TPA-DPO-based non-doped OLEDs provide the maximum external quantum efficiency (EQE) of 7.99 % and high exciton utility efficiency of 48.4 %~72.6 %. Moreover, the TPA-DPO-based device exhibits low-efficiency roll-off, still maintaining the EQE of 6.03 % at the high luminance of 5000 cd m. Those findings state clearly that PO is a promising building block of blue fluorophore with a potential HLCT feature to be applied in non-doped OLEDs.
开发具有高色纯度和低效率滚降的高效非掺杂蓝色有机发光二极管(OLED)对于显示和照明应用至关重要。在此,设计并合成了两种蓝色D-A荧光团TPA-PO和TPA-DPO,其中菲并[9,10-d]恶唑(PO)作为受体,三苯胺作为供体。TPA-PO和TPA-DPO在纯薄膜中表现出良好的热稳定性和高效的发光效率。基于光物理性质和理论计算的结果表明,TPA-PO和TPA-DPO具有杂化局域和电荷转移(HLCT)特征,可利用三线态激子实现高效电致发光(EL)。以TPA-PO/TPA-DPO为纯发射层的非掺杂OLED在468 nm处显示出均匀的EL发射峰,对应的CIE坐标分别为(0.168, 0.187)和(0.167, 0.167)。基于TPA-DPO的非掺杂OLED提供了7.99 %的最大外量子效率(EQE)和48.4 %~72.6 %的高激子利用效率。此外,基于TPA-DPO 的器件表现出低效率滚降,在5000 cd m的高亮度下仍保持6.03 %的EQE。这些发现清楚地表明,PO是一种有前途的蓝色荧光团构建单元,具有潜在的HLCT特征,可应用于非掺杂OLED。