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首页> 外文期刊>Nanotechnology >Conjugated polymersilicon nanowire array hybrid Schottky diode for solar cell application
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Conjugated polymersilicon nanowire array hybrid Schottky diode for solar cell application

机译:用于太阳能电池的共轭聚合物硅纳米线阵列混合肖特基二极管

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摘要

The hybrid Schottky diode based on silicon nanowire arrays (SiNWs) and poly(3,4-ethylenedioxythiophene)/poly(styrenesulfonate) (PEDOT:PSS) has been fabricated for high performance solar cells. The length of SiNWs on a silicon substrate, which is prepared by metal-assisted chemical etching, can be tuned by adjusting the length of the etching time. In addition, the average distances between the adjacent silicon nanowires can be controlled by changing the immersing time in a saturated PCl _5 solution. The hybrid devices are made from the SiNWs with different wire lengths and various distances between adjacent wires by spin-casting PEDOT:PSS on the silicon substrates. It is found that the length and density play leading roles in the electric output characteristics. The device made from SiNWs with optimum morphology can achieve a power conversion efficiency of 7.3%, which is much improved in comparison with that of the planar one. The measurement of the transient photovoltage decay and the analysis of the current versus voltage curve indicate that the charge recombination process is a dominant factor on the device performance.
机译:基于硅纳米线阵列(SiNWs)和聚(3,4-乙撑二氧噻吩)/聚(苯乙烯磺酸盐)(PEDOT:PSS)的混合肖特基二极管已经用于高性能太阳能电池。可以通过调整蚀刻时间的长度来调整通过金属辅助化学蚀刻制备的硅基板上的SiNW的长度。另外,可以通过改变在饱和的PC1-5溶液中的浸入时间来控制相邻的硅纳米线之间的平均距离。通过在硅基板上旋转浇铸PEDOT:PSS,由具有不同线长和相邻线之间不同距离的SiNW制成混合器件。发现长度和密度在电输出特性中起主导作用。由具有最佳形态的SiNW制成的器件可实现7.3%的功率转换效率,与平面器件相比,功率转换效率大大提高。瞬态光电压衰减的测量以及电流对电压曲线的分析表明,电荷复合过程是器件性能的主要因素。

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