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Substantial Improvement of Short Wavelength Response in n-SiNW/PEDOT:PSS Solar Cell

机译:大幅改善n-SiNW / PEDOT:PSS太阳能电池的短波长响应

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摘要

We report herein on the effects of silicon nanowire with different morphology on the device performance of n-SiNW/PEDOT:PSS hybrid solar cells. The power conversion efficiency (PCE) and external quantum efficiency (EQE) of the SiNW/PEDOT:PSS hybrid solar cells can be optimized by varying the length of the silicon nanowires. The optimal length of silicon nanowires is 0.23?μm, and the hybrid solar cell with the optimal length has the V ~(oc) of 569?mV, J ~(sc) of 30.1?mA/cm_(2), and PCE of 9.3?%. We fabricated more isolated silicon nanowires with the diluted etching solution. And the J ~(sc) of the hybrid solar cell with more isolated nanowires has a significant enhancement, from 30.1 to 33.2?mA/cm_(2). The remarkable EQE in the wavelength region of 300 and 600?nm was also obtained, which are in excess of 80?%. Our work provides a simple method to substantially improve the EQE of hybrid solar cell in the short wavelength region.
机译:我们在这里报告了不同形态的硅纳米线对n-SiNW / PEDOT:PSS混合太阳能电池器件性能的影响。通过改变硅纳米线的长度,可以优化SiNW / PEDOT:PSS混合太阳能电池的功率转换效率(PCE)和外部量子效率(EQE)。硅纳米线的最佳长度为0.23?μm,具有最佳长度的混合太阳能电池的V〜(oc)为569?mV,J〜(sc)为30.1?mA / cm_(2),PCE为9.3%。我们用稀释的蚀刻溶液制造了更多的隔离的硅纳米线。具有更多隔离纳米线的混合太阳能电池的J〜(sc)具有显着提高,从30.1到33.2?mA / cm_(2)。还获得了在300和600?nm波长范围内的显着EQE,超过80?%。我们的工作提供了一种简单的方法,可以在短波长范围内大幅提高混合太阳能电池的EQE。

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