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滚动银纳米线电极:同时解决附着力、粗糙度和导电性问题。

Rolling silver nanowire electrodes: simultaneously addressing adhesion, roughness, and conductivity.

机构信息

National Institute for Nanotechnology (NINT), National Research Council , 11421 Saskatchewan Drive, Edmonton, Alberta T6G 2M9, Canada.

出版信息

ACS Appl Mater Interfaces. 2013 Dec 11;5(23):12663-71. doi: 10.1021/am403986f. Epub 2013 Nov 22.

Abstract

Silver nanowire mesh electrodes represent a possible mass-manufacturable route toward transparent and flexible electrodes for plastic-based electronics such as organic photovoltaics (OPVs), organic light emitting diodes (OLEDs), and others. Here we describe a route that is based upon spray-coated silver nanowire meshes on polyethylene terephthalate (PET) sheets that are treated with a straightforward combination of heat and pressure to generate electrodes that have low sheet resistance, good optical transmission, that are topologically flat, and adhere well to the PET substrate. The silver nanowire meshes were prepared by spray-coating a solution of silver nanowires onto PET, in air at slightly elevated temperatures. The as-prepared silver nanowire electrodes are highly resistive due to the poor contact between the individual silver nanowires. Light pressure applied with a stainless steel rod, rolled over the as-sprayed silver nanowire meshes on PET with a speed of 10 cm s(-1) and a pressure of 50 psi, results in silver nanowire mesh arrays with sheet resistances of less than 20 Ω/□. Bending of these rolled nanowire meshes on PET with different radii of curvature, from 50 to 0.625 mm, showed no degradation of the conductivity of the electrodes, as shown by the constant sheet resistance before and after bending. Repeated bending (100 times) around a rod with a radius of curvature of 1 mm also showed no increase in the sheet resistance, demonstrating good adherence and no signs of delamination of the nanowire mesh array. The diffuse and direct transmittance of the silver nanowires (both rolled and as-sprayed) was measured for wavelengths from 350 to 1200 nm, and the diffuse transmission was similar to that of the PET substrate; the direct transmission decreases by about 7-8%. The silver nanowires were then incorporated into OPV devices with the following architecture: transparent electrode/PEDOT:PSS/P3HT:PC61BM/LiF/Al. While slightly lower in efficiency than the standard indium tin oxide substrate (ITO), the rolled silver nanowire electrodes had a very good device yield, showing that short circuits resulting from the silver nanowire electrodes can be successfully avoided by this rolling approach.

摘要

银纳米线网电极代表了一种可行的大规模制造方法,可用于制造基于塑料的电子产品(如有机光伏电池 (OPV)、有机发光二极管 (OLED) 等)的透明、灵活的电极。在这里,我们描述了一种基于在聚对苯二甲酸乙二醇酯 (PET) 片上喷涂银纳米线网的方法,该方法经过简单的热压处理,生成具有低面电阻、良好透光率、拓扑平坦且与 PET 基底结合良好的电极。银纳米线网是通过在空气中略微升高的温度下喷涂银纳米线溶液到 PET 上来制备的。由于单个银纳米线之间的接触不良,制备得到的银纳米线电极的电阻很高。使用不锈钢棒以 10 cm s(-1) 的速度和 50 psi 的压力轻压喷涂在 PET 上的银纳米线网,可得到面电阻小于 20 Ω/□的银纳米线网阵列。将这些在 PET 上滚压的纳米线网弯曲成不同曲率半径(从 50 到 0.625 mm),其电极的导电性没有降低,从弯曲前后的面电阻可以看出。在曲率半径为 1 mm 的棒上重复弯曲 100 次,面电阻也没有增加,表明纳米线网阵列具有良好的粘附性,没有分层的迹象。银纳米线(无论是滚压的还是喷涂的)的漫射和直接透射率在 350 到 1200nm 的波长范围内进行了测量,漫射透射率与 PET 基底相似;直接透射率下降约 7-8%。然后将银纳米线纳入有机光伏器件中,其结构为:透明电极/PEDOT:PSS/P3HT:PC61BM/LiF/Al。虽然与标准的铟锡氧化物基底 (ITO) 相比效率略低,但滚压银纳米线电极具有非常高的器件效率,表明通过这种滚压方法可以成功避免由于银纳米线电极导致的短路。

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