School of Electronics, Bangor University, Dean St, Bangor, Gwynedd LL57 1UT, Wales, UK.
Department of Natural Sciences, University of Chester, Thornton Science Park, Chester CH2 4NU, UK.
Nanoscale. 2019 Mar 21;11(12):5760-5769. doi: 10.1039/c8nr07974a.
A report of transparent and conducting silver nanowires (AgNWs) that produce remarkable electrical performance, surface planarity and environmental stability is given. This research presents an innovative process that relies on three sequential steps, which are roll-to-roll (R2R) compatible: thermal embossing, infrared sintering and plasma treatment. This process leads to the demonstration of a conductive film with a sheet resistance of 2.5 Ω sq-1 and high transmittance, thus demonstrating the highest reported figure-of-merit in AgNWs to date (FoM = 933). A further benefit of the process is that the surface roughness is substantially reduced compared to traditional AgNW processing techniques. The consideration of the long-term stability is given by developing an accelerated life test process that simultaneously stresses the applied bias and temperature. Regression line fitting shows that a ∼150-times improvement in stability is achieved under 'normal operational conditions' when compared to traditionally deposited AgNW films. X-ray photoelectron spectroscopy (XPS) is used to understand the root cause of the improvement in long-term stability, which is related to reduced chemical changes in the AgNWs.
本文报道了一种透明导电的银纳米线(AgNWs),其具有显著的电学性能、表面平整度和环境稳定性。这项研究提出了一种创新的工艺,该工艺依赖于三个连续的、可兼容辊对辊(R2R)的步骤:热压印、红外线烧结和等离子体处理。该工艺制备出的导电薄膜具有 2.5 Ω sq-1 的方阻和高透光率,从而在迄今为止报道的 AgNWs 中展示出了最高的性能(FoM = 933)。与传统的 AgNW 处理技术相比,该工艺的另一个优点是表面粗糙度大大降低。通过开发同时施加偏压和温度的加速寿命测试过程,考虑了长期稳定性。回归线拟合表明,与传统沉积的 AgNW 薄膜相比,在“正常工作条件”下,稳定性提高了约 150 倍。X 射线光电子能谱(XPS)用于研究长期稳定性提高的根本原因,这与 AgNWs 中化学变化的减少有关。