National Engineering Lab for TFT-LCD Materials and Technologies, Department of Electronic Engineering, Shanghai Jiao Tong University , Shanghai 200240, People's Republic of China.
ACS Appl Mater Interfaces. 2017 Apr 5;9(13):11811-11818. doi: 10.1021/acsami.7b01159. Epub 2017 Mar 22.
A novel transparent electrode composed of alginate/silver nanowire (AgNW) with high conductivity and low roughness is fabricated via a solution process at room temperature. The sol-gel transition of the alginate triggered by CaCl solution bonds the AgNWs to the substrate tightly. Meanwhile, Cl in the solution can renovate the cracks on the AgNW surfaces created during the mechanical pressing, resulting in a great increase of the electrical conductivity. The alginate/AgNW composite film can reach a sheet resistance of 2.3 Ω/sq with a transmittance of 83% at 550 nm. The conductivity of the composite film remains stable after bending and tape tests, demonstrating excellent flexibility and great adhesion of AgNWs to the substrate. Moreover, the composite film shows better stability to resist longtime storage than conventional annealed-AgNW film. The organic light emitting diode using such alginate/AgNW composite film as anode presents current densities and luminances comparable to those of indium tin oxide (ITO) anode, and higher efficiencies are obtained due to the better charge balance.
一种新型透明电极,由海藻酸钠/银纳米线(AgNW)组成,具有高导电性和低粗糙度,通过室温下的溶液工艺制备而成。海藻酸钠在 CaCl 溶液中的溶胶-凝胶转变将 AgNW 紧密地结合到基底上。同时,溶液中的 Cl 可以修复在机械压制过程中 AgNW 表面产生的裂缝,从而大大提高电导率。海藻酸钠/AgNW 复合膜在 550nm 时的方阻可达 2.3Ω/sq,透光率为 83%。复合膜在弯曲和胶带测试后保持稳定的导电性,表现出优异的柔韧性和 AgNW 对基底的良好附着力。此外,该复合膜在长时间储存方面的稳定性优于传统退火 AgNW 膜。使用这种海藻酸钠/AgNW 复合膜作为阳极的有机发光二极管呈现出与氧化铟锡(ITO)阳极相当的电流密度和亮度,并且由于更好的电荷平衡,获得了更高的效率。