School of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.
Department of Biomedical Engineering, Gachon University, 1342 Seongnam-daero, Sujeong-gu, Seongnam-si 13120 Gyeonggi-do, Republic of Korea.
ACS Nano. 2023 Jun 13;17(11):10353-10364. doi: 10.1021/acsnano.3c00781. Epub 2023 Apr 5.
Flexible see-through displays are considered to be the next generation smart display, providing improved information flow, safety, situational awareness, and overall user experience in smart windows, automotive displays, glass-form biomedical displays, and augmented reality systems. 2D titanium carbides (MXenes) are promising material as electrodes of the transparent and flexible displays due to their high transparency, metallic conductivity, and flexibility. However, current MXene-based devices have insufficient air stability and lack engineering schemes to develop matrix-addressable display forms with sufficient pixels to display information. Here, we develop an ultraflexible and environmentally stable MXene-based organic light-emitting diode (OLED) display by combining high performance MXene electrodes, flexible OLEDs, and ultrathin and functional encapsulation systems. The MXene material was synthesized and used to fabricate a highly reliable MXene-based OLED that can stably operate in air condition for over 2000 h, endure repetitive bending deformation of 1.5 mm radius, and maintain environmental stability for 6 h when exposed to wet surroundings. The RGB MXene-based OLEDs were fabricated, (1691 cd m at 40.4 mA cm for red, 1377 cd m at 4.26 mA cm for green, and 1475 cd m at 18.6 mA cm for blue) and a matrix-addressable transparent OLED display was demonstrated that could display letters and shapes.
柔性透明显示器被认为是下一代智能显示器,可在智能窗户、汽车显示器、玻璃形式的生物医学显示器和增强现实系统中提供改进的信息流、安全性、态势感知和整体用户体验。二维碳化钛 (MXenes) 因其高透明度、金属导电性和柔韧性,有望成为透明且灵活的显示器的电极材料。然而,目前基于 MXene 的设备的空气稳定性不足,并且缺乏开发具有足够像素以显示信息的矩阵寻址显示形式的工程方案。在这里,我们通过结合高性能 MXene 电极、柔性有机发光二极管 (OLED) 和超薄且功能封装系统,开发了一种超灵活且环境稳定的基于 MXene 的 OLED 显示器。合成了 MXene 材料并用于制造高度可靠的基于 MXene 的 OLED,该 OLED 可以在空气条件下稳定运行超过 2000 小时,耐受 1.5 毫米半径的重复弯曲变形,并在潮湿环境中暴露 6 小时时保持环境稳定性。制造了 RGB MXene 基 OLED(红色为 1691 cd m,在 40.4 mA cm 下;绿色为 1377 cd m,在 4.26 mA cm 下;蓝色为 1475 cd m,在 18.6 mA cm 下),并展示了矩阵寻址透明 OLED 显示器,可显示字母和形状。