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Alignment enhanced photoconductivity in single wall carbon nanotube films

机译:排列增强了单壁碳纳米管薄膜的光电导性

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In this paper we report, for the first time, the alignment enhanced photoconductivity of single wall carbon nanotube films upon laser illumination. The photoconductivity exhibited an increase, decrease or even 'negative' values when the laser spot was on different positions between contact electrodes, showing a 'position' dependent photoconductivity of partially aligned films of carbon nanotubes. Photon induced charge carrier generation in single wall carbon nanotubes and subsequent charge separation across the metal-carbon nanotube contacts is believed to cause the photoconductivity changes. A net photovoltage of similar to 4 mV and a photocurrent of similar to 10 mu A were produced under the laser intensity of similar to 273 mW with a quantum efficiency of similar to 7.8% in vacuum. The photocurrent was observed to be in the direction of nanotube alignment. Finally, there was a strong dependence of the polarization of the incident light on the photocurrent and the orientation of the films influenced the dynamics of the rise and fall of the photocurrent. All of these phenomena clearly have significance in the area of design and fabrication of solar cells, micro-opto-mechanical systems and photodetectors based on carbon nanotubes.
机译:在本文中,我们首次报道了单壁碳纳米管薄膜在激光照射下的取向增强的光电导性。当激光光斑在接触电极之间的不同位置上时,光电导率显示出增加,降低甚至“负”的值,表明碳纳米管部分排列的膜的“位置”依赖性光电导率。据信在单壁碳纳米管中光子诱导的电荷载流子的产生以及随后在金属-碳纳米管触点之间的电荷分离会引起光电导性变化。在类似于273 mW的激光强度下,在真空中的量子效率类似于7.8%的情况下产生了类似于4 mV的净光电压和类似于10μA的光电流。观察到光电流沿纳米管排列的方向。最后,入射光的偏振对光电流有很强的依赖性,并且薄膜的取向影响光电流的上升和下降的动力学。所有这些现象显然在太阳能电池,微光机械系统和基于碳纳米管的光电探测器的设计和制造领域中具有重要意义。

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