Zhao Xin, Li Meng, Jiang Linping, Tang Hua, Guan Youwei
Graduate Department, Civil Aviation Flight University of China, Guanghan, China.
School of Materials Science and Engineering, Chongqing University of Arts and Sciences, Chongqing, China.
Front Chem. 2021 Sep 24;9:683728. doi: 10.3389/fchem.2021.683728. eCollection 2021.
Silver nanowire films are good candidates to be used as transparent conductive films that could be widely utilized in organic photoelectronic devices such as polymer solar cells. However, their application is usually limited, as they are mainly used as top electrode materials; otherwise, they would be prone to complex transferring processes. In this study, we successfully prepared device-level ZnO-covered silver nanowire (AgNWs/ZnO) films. ZnO was prepared by a spray pyrolysis method using zinc-ammonia solution at a relatively low temperature (95°C). The films showed good adhesive properties to the glass substrate, considering it withstood the process of applying polyimide tapes on the surface and tearing them off more than 100 times. It also exhibited good conductivity (∼24 Ω/sq) with high transmittance in the visible range (>80%). After a simple polish and patterning, AgNWs/ZnO showed a good performance as a sub-electrode for polymer solar cells. The PM6:Y6 devices achieved a high power conversion efficiency of 8.37% with an open-circuit voltage of 0.81 V, a short-circuit current density of 18.18 mA/cm, and a yield of 81.25%. This indicates that the technology has a good prospect of large-scale fabrication of organic photoelectronic devices.
银纳米线薄膜是用作透明导电薄膜的良好候选材料,可广泛应用于聚合物太阳能电池等有机光电器件中。然而,它们的应用通常受到限制,因为它们主要用作顶电极材料;否则,它们将易于经历复杂的转移过程。在本研究中,我们成功制备了器件级的氧化锌包覆银纳米线(AgNWs/ZnO)薄膜。氧化锌是通过喷雾热解法,使用锌氨溶液在相对较低的温度(95°C)下制备的。考虑到该薄膜能够承受在其表面粘贴和撕下聚酰亚胺胶带100多次的过程,它对玻璃基板显示出良好的粘附性能。它还表现出良好的导电性(约24Ω/sq),在可见光范围内具有高透射率(>80%)。经过简单的抛光和图案化处理后,AgNWs/ZnO作为聚合物太阳能电池的子电极表现出良好的性能。PM6:Y6器件实现了8.37%的高功率转换效率,开路电压为0.81V,短路电流密度为18.18mA/cm,产率为81.25%。这表明该技术在大规模制造有机光电器件方面具有良好的前景。