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首页> 外文期刊>New Journal of Chemistry >Controlling morphology and improving the photovoltaic performances of P3HT/ZnO hybrid solar cells via P3HT-b-PEO as an interfacial compatibilizer
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Controlling morphology and improving the photovoltaic performances of P3HT/ZnO hybrid solar cells via P3HT-b-PEO as an interfacial compatibilizer

机译:通过P3HT-b-PEO作为界面相容剂控制P3HT / ZnO混合太阳能电池的形貌并提高其光伏性能

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The well-defined rod-coil diblock copolymer poly(3-hexylthiophene)-b-poly(ethylene oxide) (P3HT-b-PEO) was used as the interfacial compatibilizer for P3HT/ZnO (1:2 w/w) hybrid heterojunction solar cells. The power conversion efficiency of the device was enhanced from 0.5 to 0.98% in the presence of 0-10 wt% P3HT-b-PEO under illumination of AM 1.5G (100 mW cm~(-2)), resulting from the morphology variation. In the P3HT/ZnO/P3HT-b-PEO ternary blends, the block copolymer does not influence the crystallinity of ZnO NPs, but does influence the crystallinity of P3HT and the dispersion of ZnO NPs. An enhanced crystalline and fiber-like P3HT and more uniform dispersion of ZnO NPs are observed with a small amount of P3HT-b-PEO (10 wt%) loading, leading to a smaller domain size, enhanced interfacial area for charge separation and a favored active layer morphology for improving the device performance. On the other hand, the incorporated P3HT-b-PEO could also suppress macrophase separation during long time thermal annealing and improve the device thermal stability. These results demonstrated that the promising effect of the rod-coil diblock copolymers interfacial compatibilizer for controlling the morphology and improving the performance of hybrid bulk heterojunction solar cells.
机译:定义明确的棒-线圈二嵌段共聚物聚(3-己基噻吩)-b-聚环氧乙烷(P3HT-b-PEO)用作P3HT / ZnO(1:2 w / w)杂化异质结的界面相容剂太阳能电池。在AM 1.5G(100 mW cm〜(-2))的光照下,在0-10 wt%P3HT-b-PEO存在下,器件的功率转换效率从0.5提高到0.98%。 。在P3HT / ZnO / P3HT-b-PEO三元共混物中,嵌段共聚物不会影响ZnO NPs的结晶度,但会影响P3HT的结晶度和ZnO NPs的分散性。在少量P3HT-b-PEO(10 wt%)负载的情况下,观察到增强的晶体和纤维状P3HT以及更均匀的ZnO NPs分散,从而导致较小的畴尺寸,增强的电荷分离界面面积并受到青睐。有源层形态,以改善器件性能。另一方面,掺入的P3HT-b-PEO还可以抑制长时间热退火过程中的宏观相分离,并改善器件的热稳定性。这些结果表明,棒-线圈二嵌段共聚物界面增容剂在控制形态和改善混合本体异质结太阳能电池性能方面的有希望的效果。

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