Jiang Dai-Hua, Liao Yi-Chun, Cho Chia-Jung, Veeramuthu Loganathan, Liang Fang-Cheng, Wang Ting-Chieh, Chueh Chu-Chen, Satoh Toshifumi, Tung Shih-Huang, Kuo Chi-Ching
Institute of Organic and Polymeric Materials, Research and Development Center of Smart Textile Technology, National Taipei University of Technology, 10608 Taipei, Taiwan.
Institute of Polymer Science and Engineering, National Taiwan University, 10617 Taipei, Taiwan.
ACS Appl Mater Interfaces. 2020 Mar 25;12(12):14408-14415. doi: 10.1021/acsami.9b23291. Epub 2020 Mar 11.
Perovskite light-emitting diode (PeLED) has been vigorously developed in recent years. As it has demonstrated good performance on the rigid substrates, the next important direction of PeLED is its integration with stretchable components to realize stretchable, responsive device. Here, we describe a facile fabrication of stretchable perovskite light-emissive touch-responsive devices (PeLETDs) by utilizing highly transparent and conductive polyurethane/silver nanowires (PU/AgNWs) as the electrode. Meanwhile, a stretchable tricomposite perovskite emissive layer was developed by blending a small amount of poly(ethylene oxide) (PEO) and poly(vinylpyrrolidone) (PVP) with CsPbBr. Additionally, a thin PVP layer was introduced at the bottom of the emissive layer. On one hand, it can further improve the morphology of the emissive layer; on the other hand, it can serve as an electron-injection barrier to reduce the high nonradiative recombination at the corresponding interface. Further, to fulfill the responsive function of the fabricated PeLEDs, a poly(ethylene terephthalate) (PET) spacer with a 100 μm thickness was inserted between the top electrode and the emissive layer. A stretchable PeLETD is finally demonstrated to possess a low turn-on voltage of 2 V with a brightness of 380.5 cd m at 7.5 V and can sustain 30% uniaxial strain with a small luminance variation of 24%. More interestingly, our stretchable PeLETD exhibited high stability, which could be well touch responsivity, where the luminance is on/off switched for 300 cycles by repeatedly applying pressure.
近年来,钙钛矿发光二极管(PeLED)得到了大力发展。由于其在刚性基板上已展现出良好的性能,PeLED的下一个重要发展方向是与可拉伸组件集成,以实现可拉伸、响应式器件。在此,我们描述了一种通过使用高度透明且导电的聚氨酯/银纳米线(PU/AgNWs)作为电极来简便制备可拉伸钙钛矿发光触摸响应器件(PeLETDs)的方法。同时,通过将少量聚环氧乙烷(PEO)和聚乙烯吡咯烷酮(PVP)与CsPbBr混合,开发出了一种可拉伸的三元复合钙钛矿发光层。此外,在发光层底部引入了一层薄的PVP层。一方面,它可以进一步改善发光层的形貌;另一方面,它可以作为电子注入势垒,以减少相应界面处的高非辐射复合。进一步地,为了实现所制备的PeLED的响应功能,在顶部电极和发光层之间插入了一个厚度为100μm的聚对苯二甲酸乙二酯(PET)间隔层。最终展示的可拉伸PeLETD具有2V的低开启电压,在7.5V时亮度为380.5cd m,并且能够承受30%的单轴应变,亮度变化仅为24%。更有趣的是,我们的可拉伸PeLETD表现出高稳定性,具有良好的触摸响应性,通过反复施加压力,亮度可在开/关状态下切换300次循环。