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Enhancement of recombination process using silver and graphene quantum dot embedded intermediate layer for efficient organic tandem cells

机译:使用银和石墨烯量子点嵌入中间层进行复合过程的增强用于有效的有机串联细胞

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High performance of organic tandem solar cell is largely dependent on transparent and conductive intermediate layer (IML). The current work reports the design and fabrication of an IML using a simple solution process. The efficiency of a homo-tandem device with poly(3-hexylthiophene):phenyl-C61-butyric acid methyl ester as an active layer and poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate)/poly(ethylenimine) as an IML was initially found to be 3.40%. Further enhancement of the cell efficiency was achieved using silver nanoparticles (Ag-NPs) of different sizes and graphene quantum dot embedded IML. A maximum efficiency of 4.03% was achieved using 7?nm Ag-NPs that contribute to a better recombination process. Also, the performance of the tandem cell was solely based on the electrical improvements indicated by the current - voltage measurements, external quantum efficiency and impedance analysis. The use of Ag-NPs in the IML has been shown to lengthen the life time of electron-hole pairs in the device. This study thus paves way to develop such efficient IMLs for more efficient tandem solar cells.
机译:有机串联太阳能电池的高性能主要取决于透明和导电中间层(IML)。目前的工作通过简单的解决方案过程报告了IML的设计和制造。具有聚(3-己基噻吩)的同源串联装置的效率:苯基-C61-丁酸甲酯作为活性层和聚(3,4-亚乙二醇苯噻吩):聚(苯乙烯磺酸盐)/聚(乙基亚胺)作为IML最初被发现为3.40%。使用不同尺寸和石墨烯量子点嵌入式IML的银纳米颗粒(AG-NP)实现了细胞效率的进一步提高。使用7μmAg-nps实现的最大效率为4.03%,有助于更好的重组过程。此外,串联电池的性能仅基于电流 - 电压测量,外部量子效率和阻抗分析所示的电改进。已经示出了在IML中使用AG-NPS以延长器件中电子空穴对的寿命。因此,该研究铺设了为更有效的串联太阳能电池开发了这种有效的IML。

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