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传播模式在用于透明电极的银纳米线阵列中的作用。

The role of propagating modes in silver nanowire arrays for transparent electrodes.

作者信息

Gao Tongchuan, Leu Paul W

出版信息

Opt Express. 2013 May 6;21 Suppl 3:A419-29. doi: 10.1364/OE.21.00A419.

Abstract

Silver nanowires have been shown to demonstrate enhanced transmission and promising potential for next-generation transparent electrodes. In this paper, we systematically investigated the electrical and optical properties of 1D and 2D silver nanowire arrays as a function of diameter and pitch and compared their performance to that of silver thin films. Silver nanowires were found to exhibit enhanced transmission over thin films due to propagating resonance modes between nanowires. We evaluated the angular dependence and dispersion relation of these propagating modes and demonstrate that larger nanowire diameters and pitches are favored for achieving higher solar transmission at a particular sheet resistance. Silver nanowires may achieve achieve solar transmission > 90% with sheet resistances of a few Ω/sq and figure of merit σdc/σop > 1000.

摘要

银纳米线已被证明具有增强的传输性能,并在下一代透明电极方面展现出广阔的潜力。在本文中,我们系统地研究了一维和二维银纳米线阵列的电学和光学性质与直径和间距的函数关系,并将它们的性能与银薄膜进行了比较。由于纳米线之间的传播共振模式,银纳米线在透过率方面优于薄膜。我们评估了这些传播模式的角度依赖性和色散关系,并证明在特定的薄层电阻下,较大的纳米线直径和间距有利于实现更高的太阳能透过率。银纳米线在薄层电阻为几Ω/sq且优值σdc/σop>1000时,可实现太阳能透过率>90%。

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