Research Institute for New Materials Technology, Chongqing University of Arts and Sciences, Chongqing 402160, People's Republic of China. College of Materials Science and Engineering, Chongqing University of Technology, Chongqing 400054, People's Republic of China.
Nanotechnology. 2020 Jan 17;31(4):045704. doi: 10.1088/1361-6528/ab4c03. Epub 2019 Oct 28.
Advances in flexible electronic and optoelectronic devices have caused higher requirements for fabricating high-performance and low cost flexible transparent conductive electrodes (TCEs). Copper nanowires (Cu NWs) possess excellent electrical and optical properties, but the large contact resistance and poor stability limit their practical application in optoelectronic devices. In this work, we report a robust, convenient and environment-friendly method to assemble copper nanowires/reduced graphene oxide (Cu NWs/rGO) TCEs with enhanced conductivity, flexibility and stability at room temperature. The NaBH treatment was used to remove the organics and oxides on the surface of Cu NWs, and the graphene oxide (GO) capping layer was also effectively reduced at the same time. The best Cu NWs/rGO composite TCEs show a good optical-electrical performance with a sheet resistance of ∼50 Ω/sq and transmittance of 83% as well as superior mechanical flexibility. The oxidation resistance of Cu NWs in normal environment and even at a relatively high temperature has also been greatly improved. Additionally, the Cu NWs/rGO TCEs based heaters presented high saturation temperature and rapid response time under a low voltage. The high-performance composite Cu NWs TCEs with good stability are expected to be applied in various types of flexible optoelectronic devices.
柔性电子和光电子器件的发展对制备高性能、低成本的柔性透明导电电极(TCEs)提出了更高的要求。铜纳米线(CuNWs)具有优异的电学和光学性能,但大的接触电阻和较差的稳定性限制了其在光电子器件中的实际应用。在这项工作中,我们报道了一种在室温下制备具有增强导电性、柔韧性和稳定性的铜纳米线/还原氧化石墨烯(CuNWs/rGO)TCEs 的稳健、简便和环保的方法。NaBH 处理用于去除 CuNWs 表面的有机物和氧化物,同时也有效地还原了氧化石墨烯(GO)的覆盖层。最佳的 CuNWs/rGO 复合 TCEs 表现出良好的光电性能,其方阻约为 50 Ω/sq,透光率为 83%,同时具有优异的机械柔韧性。CuNWs 在正常环境甚至相对较高温度下的抗氧化性也得到了极大的提高。此外,基于 CuNWs/rGO TCEs 的加热器在低电压下表现出较高的饱和温度和快速响应时间。具有良好稳定性的高性能复合 CuNWs TCEs 有望应用于各种类型的柔性光电子器件。