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Hybrid solar cells with conducting polymers, vertically aligned silicon nanowire arrays: The effect of silicon conductivity

机译:具有导电聚合物,垂直排列的硅纳米线阵列的混合太阳能电池:硅导电性的影响

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摘要

Organic/inorganic hybrid solar cells, based on vertically aligned n-type silicon nanowires (n-Si NWs), p-type conducting polymers (PEDOT:PSS), were investigated as a function of Si conductivity. The n-Si NWs were easily prepared from the n-Si wafer by employing a silver nanodot-mediated micro- electrochemical redox reaction. This investigation shows that the photocurrent-to-voltage characteristics of the n-Si NW/PEDOT:PSS cells clearly exhibit a stable rectifying diode behavior. The increase in current density, fill factor using high conductive silicon is attributed to an improved charge transport towards the electrodes achieved by lowering the devices series resistance. Our results also show that the surface area of the nanowire that can form heterojunction domains significantly influences the device performance.
机译:研究了基于垂直排列的n型硅纳米线(n-Si NWs),p型导电聚合物(PEDOT:PSS)的有机/无机混合太阳能电池与Si电导率的关系。通过使用银纳米点介导的微电化学氧化还原反应,可以很容易地从n-Si晶片制备n-Si NW。这项研究表明,n-Si NW / PEDOT:PSS电池的光电流电压特性清楚地显示出稳定的整流二极管性能。使用高导电硅提高电流密度和填充系数的原因是,通过降低器件的串联电阻,可以改善向电极的电荷传输。我们的结果还表明,可以形成异质结域的纳米线的表面积会显着影响器件性能。

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