Zhang Cheng, Huang Qingyu, Cui Qingyu, Ji Chengang, Zhang Zhong, Chen Xi, George Tom, Zhao Suling, Guo L Jay
Department of Electrical Engineering and Computer Science , University of Michigan , Ann Arbor , Michigan 48109 , United States.
Institute of Optoelectronics Technology , Beijing Jiaotong University , Beijing 100044 , China.
ACS Appl Mater Interfaces. 2019 Jul 31;11(30):27216-27225. doi: 10.1021/acsami.9b08289. Epub 2019 Jul 22.
One key obstacle in fabricating efficient flexible and printable optoelectronic devices is the absence of ideal flexible transparent conductors with superior optical, electrical, and mechanical properties. Here, high-performance flexible transparent conductors are demonstrated using ultrathin (<10 nm) doped silver films, which exhibit an averaged visible transmittance of 80% without any antireflection coating, sheet resistance less than 20 Ω sq, and mechanical stability over 1000 bending cycles. The conductor is prepared by doping silver with an additive metal (e.g., nickel, copper, titanium, chromium), and its various properties can be readily tuned by either using different doping metal species or controlling the dopant concentration. Centimeter-size, flexible polymer light-emitting diodes are fabricated using a nickel-doped silver-based electrode, and the devices exhibit 30% enhanced current efficiencies compared to their indium tin oxide counterparts, invariant emission spectra at large viewing angles, and operational stability for over 1200 bending circles. In addition, 6 in. flexible low-emissivity coatings are demonstrated using a copper-doped silver-based conductor, which transmit 85.2% of the visible light while rejecting over 90% of the infrared radiation beyond 1250 nm.
制造高效的柔性可印刷光电器件的一个关键障碍是缺乏具有优异光学、电学和机械性能的理想柔性透明导体。在此,使用超薄(<10 nm)掺杂银膜展示了高性能柔性透明导体,该银膜在没有任何抗反射涂层的情况下平均可见光透射率为80%,方阻小于20 Ω/sq,并且在超过1000次弯曲循环中具有机械稳定性。该导体通过用添加剂金属(如镍、铜、钛、铬)掺杂银来制备,并且其各种性能可以通过使用不同的掺杂金属种类或控制掺杂剂浓度来轻松调节。使用镍掺杂银基电极制造了厘米尺寸的柔性聚合物发光二极管,与氧化铟锡对应物相比,该器件的电流效率提高了30%,在大视角下发射光谱不变,并且在超过1200次弯曲循环中具有操作稳定性。此外,使用铜掺杂银基导体展示了6英寸的柔性低发射率涂层,该涂层透射85.2%的可见光,同时阻挡超过90%的波长超过1250 nm的红外辐射。