Chongqing Institute of Green and Intelligent Technology, CAS , Fang Zheng Road 266 , Chongqing 400714 , P. R. China.
Key Laboratory of Low-grade Energy Utilization Technologies and Systems of the Ministry of Education of China; School of Power Engineering , Chongqing University , Shazheng Road 174 , Chongqing 400044 , P. R. China.
ACS Appl Mater Interfaces. 2018 Mar 21;10(11):9571-9578. doi: 10.1021/acsami.7b15902. Epub 2018 Mar 8.
Driven by huge demand for flexible optoelectronic devices, high-performance flexible transparent electrodes are continuously sought. In this work, a flexible multilayer transparent electrode with the structure of ZnO/Ag/CuSCN (ZAC) is engineered, featuring inorganic solution-processed cuprous thiocyanate (CuSCN) as a hole-transport antireflection coating. The ZAC electrode exhibits an average transmittance of 94% (discounting the substrate) in the visible range, a sheet resistance ( R) of 9.7 Ω/sq, a high mechanical flexibility without R variation after bending 10 000 times, a long-term stability of 400 days in ambient environment, and a scalable fabrication process. Moreover, spontaneously formed nanobulges are integrated into ZAC electrode, and light outcoupling is significantly improved. As a result, when applied into super yellow-based flexible organic light-emitting diode, the ZAC electrode provides a high-current efficiency of 23.4 cd/A and excellent device flexibility. These results suggest that multilayer thin films with ingenious material design and engineering can serve as a promising flexible transparent electrode for optoelectronic applications.
受对灵活的光电设备的巨大需求的推动,人们一直在寻找高性能的灵活透明电极。在这项工作中,设计了一种具有 ZnO/Ag/CuSCN(ZAC)结构的灵活多层透明电极,其特点是无机溶液处理的硫氰化亚铜(CuSCN)作为空穴传输防反射涂层。ZAC 电极在可见光范围内的平均透光率为 94%(不计入基底),方阻(R)为 9.7 Ω/sq,具有很高的机械灵活性,在弯曲 10000 次后 R 没有变化,在环境中具有 400 天的长期稳定性,并且具有可扩展的制造工艺。此外,自发形成的纳米凸块被集成到 ZAC 电极中,从而显著提高了光提取效率。结果,当应用于基于超级黄色的灵活有机发光二极管时,ZAC 电极提供了 23.4 cd/A 的高光电流效率和出色的器件灵活性。这些结果表明,具有巧妙材料设计和工程的多层薄膜可以用作光电应用的有前途的灵活透明电极。