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BALANCED CARRIER TRANSPORT IN ORGANIC SOLAR CELLS USING IMPLANTED INDIUM-TIN-OXIDE NANO-COLUMNS

机译:使用植入的铟 - 氧化铟纳米柱在有机太阳能电池中平衡载体运输

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In this paper, we present evidence of balanced electron and hole transport in polymer-fullerene based solar cells by means of embedded indium-tin-oxide nano-electrodes. Enabled by a controllable electrochemical deposition, the individual nano-electrodes are uniformly enclosed by a poly(3,4-ethylenedioxythiophene) hole-conducting layer, allowing a relatively short route for holes to reach the anode and hence increasing the effective hole mobility. Consequently, the power conversion efficiency and photogenerated current are maximized with a deposition condition of 50 μC, where the ratio of the electron to hole mobility is nearly unity.
机译:在本文中,我们通过嵌入的铟 - 氧化铟氧化物纳米电极提出了基于聚合物 - 富勒烯的太阳能电池的平衡电子和空穴传输的证据。通过可控电化学沉积使得各个纳米电极由聚(3,4-亚乙基氧基噻吩)空穴导电层均匀包围,允许相对短的孔进行孔来到达阳极并因此增加有效空穴迁移率。因此,功率转换效率和光生电流最大化为50μC的沉积条件,其中电子与空穴迁移率的比率几乎是统一的。

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