Liu Denghui, Nie Xuewei, Li Xin-Ge, Li De-Li, Chen Zijian, Liao Sheng, Sun Guanwei, Liang Baoyan, Yang Zhihai, Wang Zhiheng, Li Mengke, Li Ming-De, Kido Junji, Su Shi-Jian
Guangdong Basic Research Center of Excellence for Energy and Information Polymer Materials, State Key Laboratory of Luminescent Materials and Devices, South China University of Technology, Wushan Road 381, Guangzhou, 510640, P. R. China.
College of Chemistry and Chemical Engineering, Key Laboratory for Preparation and Application of Ordered Structure Materials of Guangdong Providence, Shantou University, 243 Daxue Road, Shantou, 515063, P. R. China.
Adv Mater. 2025 Jun 25:e2507820. doi: 10.1002/adma.202507820.
Rapid and substantial progress is made in monochromatic perovskite light-emitting diodes (LEDs), however, challenges remain in achieving white electroluminescence for high-definition display and lighting applications with perovskites as emitters. Here, a proof-of-the-concept configuration is proposed that successfully demonstrates monolithic perovskite/organic hybrid white LEDs (P/O-WLEDs) with a wide color gamut for the first time. In this configuration, pure-green and deep-blue organic emission units are successively superimposed onto a red emission perovskite layer, forming a hybrid emissive system. The unique carrier transporting and luminescent characteristics of the organic emission units facilitate a broadened carrier distribution, high exciton utilization, and narrowband emission peaks. Consequently, the developed P/O-WLEDs achieve a peak external quantum efficiency of 21.1%, ultralow turn-on voltage of 2.6 V, and simultaneously a significantly extended operational lifetime of 21.9 h (LT50 at an initial luminance of 500 cd m). Furthermore, by regulating the charge transport properties through an RbI-treated perovskite unit and an optimized thin LiF layer, the P/O-WLEDs not only maintain comparable performance but also demonstrate obviously improved spectral stability and a suitable correlated color temperature, opening a new avenue for the development of display and lighting technologies.
单色钙钛矿发光二极管(LED)取得了迅速而显著的进展,然而,以钙钛矿作为发光体实现用于高清显示和照明应用的白色电致发光仍面临挑战。在此,提出了一种概念验证配置,首次成功展示了具有宽色域的单片钙钛矿/有机混合白光LED(P/O-WLED)。在这种配置中,纯绿色和深蓝色有机发光单元依次叠加在红色发光钙钛矿层上,形成一个混合发光系统。有机发光单元独特的载流子传输和发光特性有助于拓宽载流子分布、提高激子利用率以及获得窄带发射峰。因此,所开发的P/O-WLED实现了21.1%的峰值外量子效率、2.6 V的超低开启电压,同时还实现了21.9小时的显著延长的工作寿命(初始亮度为500 cd m时的LT50)。此外,通过用RbI处理的钙钛矿单元和优化的薄LiF层来调节电荷传输特性,P/O-WLED不仅保持了可比的性能,而且还展示出明显改善的光谱稳定性和合适的相关色温,为显示和照明技术的发展开辟了一条新途径。