Zhao Junyi, Lo Li-Wei, Wan Haochuan, Mao Pengsu, Yu Zhibin, Wang Chuan
Department of Electrical & Systems Engineering, Washington University in St. Louis, St. Louis, MO, 63130, USA.
Institute of Materials Science and Engineering, Washington University in St. Louis, St. Louis, MO, 63130, USA.
Adv Mater. 2021 Dec;33(48):e2102095. doi: 10.1002/adma.202102095. Epub 2021 Oct 8.
Halide perovskites have great potential for use in high-performance light-emitting diodes (LEDs) and displays. Here, a perovskite LEDs (PeLEDs) fabricated directly on an elastomer substrate, in which every single layer in the device from bottom anode to top cathode is patterned solely using a highly scalable inkjet printing process, is reported. Compared to PeLEDs made using conventional microfabrication processes, the printing process significantly shortens the fabrication time by at least tenfold (from over 5 h to less than 25 min). The all-printed PeLEDs have a novel 4-layer structure (bottom electrode, perovskite emissive layer, buffer layer, top electrode) without separate electron or hole transporting layers. For flexible PeLEDs printed directly in ambient conditions, a turn-on voltage, maximum luminance intensity, and maximum current efficiency of 3.46 V, 10227 cd m , and 2.01 cd A , respectively, is achieved. The devices also exhibit excellent robustness and stability even when bent to a curvature radius of 2.5 mm. The reported device structure and fabrication processes can enable high-performance flexible PeLEDs to be manufactured over a larger area at extremely low cost and fast speed, which can facilitate the adoption of the promising PeLED technology in the emerging foldable displays, smart wearables, and many other applications.
卤化物钙钛矿在高性能发光二极管(LED)和显示器中具有巨大的应用潜力。在此,报道了一种直接在弹性体基板上制造的钙钛矿发光二极管(PeLED),该器件中从底部阳极到顶部阴极的每一层仅使用高度可扩展的喷墨打印工艺进行图案化。与使用传统微加工工艺制造的PeLED相比,该打印工艺将制造时间显著缩短了至少十倍(从超过5小时缩短至不到25分钟)。全印刷的PeLED具有新颖的四层结构(底部电极、钙钛矿发光层、缓冲层、顶部电极),无需单独的电子或空穴传输层。对于在环境条件下直接印刷的柔性PeLED,其开启电压、最大亮度强度和最大电流效率分别达到3.46 V、10227 cd m 和2.01 cd A 。即使弯曲到2.5毫米的曲率半径,这些器件仍表现出出色的坚固性和稳定性。所报道的器件结构和制造工艺能够以极低的成本和快速的速度在更大面积上制造高性能柔性PeLED,这有助于在新兴的可折叠显示器、智能可穿戴设备和许多其他应用中采用前景广阔的PeLED技术。