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Dry-Deposited Transparent Carbon Nanotube Film as Front Electrode in Colloidal Quantum Dot Solar Cells

机译:胶体量子点太阳能电池中的前电极干燥沉积的透明碳纳米管膜

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Single-walled carbon nanotubes (SWCNTs) show great potential as an alternative material for front electrodes in photovoltaic applications, especially for flexible devices. In this work, a press-transferred transparent SWCNT film was utilized as front electrode for colloidal quantum dot solar cells (CQDSCs). The solar cells were fabricated on both glass and flexible substrates, and maximum power conversion efficiencies of 5.5 and 5.6 %, respectively, were achieved, which corresponds to 90 and 92% of an indium-doped tin oxide (ITO)-based device (6.1 %). The SWCNTs are therefore a very good alternative to the ITO-based electrodes especially for flexible solar cells. The optical electric field distribution and optical losses within the devices were simulated theoretically and the results agree with the experimental results. With the optical simulations that were performed it may also be possible to enhance the photovoltaic performance of SWCNT-based solar cells even further by optimizing the device configuration or by using additional optical active layers, thus reducing light reflection of the device and increasing light absorption in the quantum dot layer.
机译:单壁碳纳米管(SWCNTS)显示出光伏应用中的前电极的替代材料的巨大潜力,特别是对于柔性装置。在这项工作中,压制转移的透明SWCNT薄膜用作胶体量子点太阳能电池(CQDSC)的前电极。在玻璃和柔性基材上制造太阳能电池,并且达到了5.5%和5.6%的最大功率转化效率,其对应于90和92%的铟掺杂的氧化锡(ITO)基础(6.1 %)。因此,SWCNTS是对基于ITO的电极非常好的替代方案,尤其是对于柔性太阳能电池。理论上模拟了器件内的光学电场分布和光学损耗,结果同意实验结果。利用所执行的光学模拟,也可以通过优化装置配置或通过使用附加的光学有源层来提高SWCNT的太阳能电池的光伏性能,从而减少了装置的光反射并增加了光吸收量子点层。

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