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Development of bifacial inverted polymer solar cells using a conductivity-controlled transparent PEDOT: PSS and a striped Au electrode on the hole collection side

机译:Development of bifacial inverted polymer solar cells using a conductivity-controlled transparent pEDOT: pss and a striped au electrode on the hole collection side

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摘要

An inverted bifacial polymer solar cell was developed using a conductivity-controlled transparent poly(3,4-ethylenedioxylenethiophene):poly(4- styrene sulfonic acid) (PEDOT:PSS) as a hole collection layer and a striped Au electrode with a large open aperture ratio (Rap) as a hole collection electrode. We investigated the performance of the device by varying the interelectrode distance of the striped Au electrode and the sheet resistance of the PEDOT:PSS film. The device using untreated Clevios P (PEDOT:PSS) showed a maximum electric output (Pw) in the Rap range of 50 to 65%. When alcohol-treated Clevios P (Clevios P+) with a lower electrical resistance was used, the maximum Pw increased by 40% compared with that of the device using Clevios P. The maximum Pw was obtained in the R ap range of 84% as the hole collection efficiency of the striped Au electrode improved with the decreased sheet resistance of the PEDOT:PSS. © 2014 The Japan Society of Applied Physics.
机译:使用电导率控制的透明聚(3,4-乙撑二氧二甲苯噻吩):聚(4-苯乙烯磺酸)(PEDOT:PSS)作为空穴收集层和带大开口的条状Au电极开发了一种倒置双面聚合物太阳能电池孔径比(Rap)作为空穴收集电极。我们通过改变条状金电极的电极间距离和PEDOT:PSS膜的薄层电阻来研究器件的性能。使用未经处理的Clevios P(PEDOT:PSS)的设备在Rap范围为50%至65%的情况下显示出最大电输出(Pw)。当使用酒精处理的具有较低电阻的Clevios P(Clevios P +)时,与使用Clevios P的设备相比,最大Pw增加了40%。在R ap范围为84%时获得了最大Pw。条纹金电极的空穴收集效率随着PEDOT:PSS的薄层电阻的降低而提高。 ©2014日本应用物理学会。

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