Anikeeva Polina O, Halpert Jonathan E, Bawendi Moungi G, Bulović Vladimir
Laboratory of Organic Optics and Electronics, Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Nano Lett. 2007 Aug;7(8):2196-200. doi: 10.1021/nl0703424. Epub 2007 Jul 7.
We demonstrate light emitting devices (LEDs) with a broad spectral emission generated by electroluminescence from a mixed-monolayer of red, green, and blue emitting colloidal quantum dots (QDs) in a hybrid organic/inorganic structure. The colloidal QDs are reproducibly synthesized and yield high luminescence efficiency materials suitable for LED applications. Independent processing of the organic charge transport layers and the QD luminescent layer allows for precise tuning of the emission spectrum without changing the device structure, simply by changing the ratio of different color QDs in the active layer. Spectral tuning is demonstrated through fabrication of white QD-LEDs that exhibit external quantum efficiencies of 0.36% (Commission Internationale de l'Eclairage) coordinates of (0.35, 0.41) at video brightness, and color rendering index of 86 as compared to a 5500 K blackbody reference.
我们展示了一种发光器件(LED),其具有由混合单层的红色、绿色和蓝色发光胶体量子点(QD)在有机/无机混合结构中通过电致发光产生的宽光谱发射。胶体量子点可重复合成,并产生适用于LED应用的高发光效率材料。通过独立处理有机电荷传输层和量子点发光层,只需改变有源层中不同颜色量子点的比例,就能在不改变器件结构的情况下精确调节发射光谱。通过制造白色量子点LED展示了光谱调谐,该白色量子点LED在视频亮度下的外量子效率为0.36%(国际照明委员会)坐标为(0.35,0.41),与5500K黑体参考相比,显色指数为86。