Li Linhai, Fan Qingrui, Xue Han, Zhang Shizhong, Wu Shuwang, He Zhiyuan, Wang Jianjun
Key Laboratory of Green Printing, Institute of Chemistry, Chinese Academy of Sciences Beijing 100190 China
School of Chemistry and Chemical Engineering, University of Chinese Academy of Sciences Beijing 100049 China.
RSC Adv. 2020 Mar 9;10(17):9894-9901. doi: 10.1039/d0ra00916d. eCollection 2020 Mar 6.
Flexible transparent conductors as a replacement for indium tin oxide (ITO) have been urgently pursued due to the inherent drawbacks of ITO films. Here, we report the fabrication of flexible transparent copper meshes with recrystallized ice-crystal templates. Completely different to conventional approaches, this novel method needs neither the fabrication of mesh patterns micro/nanofabrication technologies nor the deposition of copper through evaporation or sputtering. The linewidth and mesh size of the prepared copper meshes can be regulated, as the ice recrystallization process is controllable. Therefore, the formed copper meshes have tailorable conductivity and transparency, which are critical for optoelectronic devices. Remarkably, the electrical performance of the copper meshes is maintained even after storing for 60 days in ambient conditions or bending for 1000 cycles. This strategy is modular and can also be employed to prepare other metal meshes, such as silver meshes, offering versatile substitutes for ITO in electronic devices.
由于氧化铟锡(ITO)薄膜存在固有的缺点,人们迫切需要用柔性透明导体来替代它。在此,我们报道了利用重结晶冰晶模板制备柔性透明铜网的方法。与传统方法截然不同的是,这种新方法既不需要通过微纳加工技术制造网格图案,也不需要通过蒸发或溅射来沉积铜。由于冰的重结晶过程是可控的,所以所制备铜网的线宽和网格尺寸可以调节。因此,形成的铜网具有可定制的导电性和透明度,这对于光电器件至关重要。值得注意的是,即使在环境条件下储存60天或弯曲1000次后,铜网的电学性能仍能保持。这种策略具有模块化,也可用于制备其他金属网,如银网,为电子器件中的ITO提供了多种替代材料。