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The photoirradiation induced p-n junction in naphthylamine-based organic photovoltaic cells

机译:光致辐照诱导pn结naphthylamine-based有机光伏电池

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The bulk heterojunction (BHJ) plays an indispensable role in organic photovoltaics, and thus has been investigated extensively in recent years. While a p-n heterojunction is usually fabricated using two different donor and acceptor materials such as poly(3-hexylthiophene-2,5-diyl) (P3HT) and phenyl-C61-butyric acid methyl ester (PCBM), it is really rare that such a BHJ is constructed by a single entity. Here, we presented a photoirradiation-induced p-n heterojunction in naphthylamine-based organic photovoltaic cells, where naphthylamine as a typical p-type semiconductor could be oxidized under photoirradiation and transformed into a new semiconductor with the n-type character. The p-n heterojunction was realized using both the remaining naphthylamine and its oxidative product, giving rise to the performance improvement in organic photovoltaic devices. The experimental results show that the power conversion efficiency (PCE) of the devices could be achieved up to 1.79% and 0.43% in solution and thin film processes, respectively. Importantly, this technology using naphthylamine does not require classic P3HT and PCBM to realize the p-n heterojunction, thereby simplifying the device fabrication process. The present approach opens up a promising route for the development of novel materials applicable to the p-n heterojunction.
机译:大部分异质结(BHJ)扮演在有机光电,不可或缺的作用,因此最近一直在广泛调查年。组合使用两种不同的供体和受体材料,如聚3-hexylthiophene-2 5-diyl)(P3HT)和phenyl-C61-butyric酸甲酯(PCBM),真的很少见这样的BHJ由一个单一的实体。提出了一个photoirradiation-induced pn在naphthylamine-based有机异质结萘胺作为光伏电池典型的p型半导体氧化在光致辐照和转换成一个新的半导体与n型性格。异质结是意识到使用剩余的萘胺及其氧化产品,性能提高有机光伏设备。实验结果表明,该权力转换效率(PCE)的设备在溶液中达到1.79%和0.43%薄膜的过程。这种技术使用萘胺不需要经典P3HT和PCBM实现pn异质结,从而简化了设备制造过程。一个有前途的路线发展的小说材料适用于pn异质结。

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