College of Materials Science and Engineering, Chongqing University of Technology, Chongqing 400054, People's Republic of China. Research Institute for New Materials Technology, Chongqing University of Arts and Sciences, Chongqing 402160, People's Republic of China.
Nanotechnology. 2018 Nov 9;29(45):455706. doi: 10.1088/1361-6528/aade1e.
Copper nanowires (Cu NWs) become a potential functional material in future optoelectronic devices owing to their high optical transmittance, super electrical conductivity, and good flexibility as well as low cost. However, the drawbacks of Cu NWs with large contact resistance and poor stability make them far from the practical implementations. Herein we report a robust method to fabricate high-quality Cu NWs transparent conductive electrodes (TCEs) with enhanced mechanical and chemical stability at room temperature. Firstly, we used a sodium borohydride (NaBH) treatment to remove the organics and oxides on surface of Cu NWs and thus greatly improved the conductivity of Cu NWs TCEs. Subsequently, followed by decorating a dense hydrophobic dodecanethiol (DT) protective layer, the formed Cu NWs TCEs showed superior mechanical and chemical stability compared to the raw ones. The optimized Cu NWs TCEs exhibit a sheet resistance of ∼38 Ω/sq at an optical transmittance of 83% (550 nm). Unlike the bare Cu NWs, the DT-decorated Cu NWs showed good stability under humid conditions at (85% RH) at 85 °C for 12 h. Moreover, the DT-decorated Cu NW TCEs were tested as transparent heaters, showing the fast response time and high saturation temperature under a low DC voltage. Our studies demonstrate that the proper post treatments for Cu NWs TCEs would make them more competitive in application of next-generation electronic and optoelectronic devices.
铜纳米线 (Cu NWs) 由于其高透光率、超高导电性、良好的柔韧性和低成本,成为未来光电子器件中一种有前途的功能材料。然而,Cu NWs 存在接触电阻大、稳定性差的缺点,使其远未达到实际应用的程度。在此,我们报告了一种在室温下制备具有增强机械和化学稳定性的高质量 Cu NWs 透明导电电极 (TCE) 的稳健方法。首先,我们使用硼氢化钠 (NaBH) 处理去除 Cu NWs 表面的有机物和氧化物,从而大大提高了 Cu NWs TCE 的导电性。随后,通过修饰致密的疏水性十二硫醇 (DT) 保护层,与原始 Cu NWs 相比,所形成的 Cu NWs TCEs 表现出优异的机械和化学稳定性。优化后的 Cu NWs TCEs 在 550nm 处的透光率为 83%时,方阻约为 38 Ω/sq。与裸露的 Cu NWs 不同,DT 修饰的 Cu NWs 在 85 °C、相对湿度为 85%的潮湿条件下 12 小时后仍具有良好的稳定性。此外,DT 修饰的 Cu NW TCEs 被用作透明加热器,在低直流电压下显示出快速的响应时间和高饱和温度。我们的研究表明,对 Cu NWs TCEs 进行适当的后处理将使它们在下一代电子和光电子器件的应用中更具竞争力。