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Fabrication of Bulk Heterojunction Photovoltaic Cells with Controlled Distribution of p-n Components by Evaporative Spray Deposition using Ultradilute Solution

机译:采用超稀溶液通过蒸发喷雾沉积法制造具有受控p-n成分分布的块状异质结光伏电池

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A distribution-controlled bulk heterojunction (dc-BHJ) photovoltaic cell where the distribution of an electron donor and acceptor is controlled across the film was fabricated by Evaporative Spray Deposition using Ultradilute Solution (ESDUS) method, which can build a layered structure of polymer semiconductors soluble in a same solvent, and the energy conversion efficiency, PCE, of the dc-BHJ was significantly improved compared with a conventional BHJ cell. The dc-BHJ cells were fabricated by changing the ratio of a donor, regioregular poly(3-hexyl-thiophene-2,5-diyl) (P3HT), and an acceptor, a fullerene derivative (PCBM), from 2:1 to 1:2. The short circuit current, Jsc, and PCE of a dc-BHJ cell having P3HT-rich BHJ/PCBM-rich BHJ structure was 6.06 mA/cm~2 and 2.15 %, respectively, while those of a conventional BHJ cell having P3HT:PCBM=1:1 layer were 5.26 mA/cm~2, 1.71 %. In the dc-BHJ cells, the introduction of composition gradient brought about the increase in conversion efficiency. The transportation of photogenerated charge carriers to the collecting electrodes was improved because the better pathways should be formed in the dc-BHJ cells.
机译:使用超稀释溶液(ESDUS)方法通过蒸发喷涂沉积技术制造了分布控制的体异质结(dc-BHJ)光伏电池,其中电子供体和受主的分布在整个膜中得到控制,这种方法可以构建聚合物半导体的层状结构与传统的BHJ电池相比,dc-BHJ的能量转换效率PCE显着提高。通过将供体,区域规则的聚(3-己基噻吩-2,5-二基)(P3HT)和受体,富勒烯衍生物(PCBM)的比例从2:1更改为dc-BHJ电池1:2。具有富含P3HT的BHJ /富含PCBM的BHJ结构的dc-BHJ电池的短路电流,Jsc和PCE分别为6.06 mA / cm〜2和2.15%,而具有P3HT:PCBM的常规BHJ电池的短路电流,Jsc和PCE分别为= 1∶1的层为5.26mA / cm〜2,为1.71%。在dc-BHJ电池中,成分梯度的引入带来了转换效率的提高。由于应该在dc-BHJ电池中形成更好的路径,因此改善了光生电荷载流子向收集电极的传输。

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