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Efficient Phthalimide Copolymer-Based Bulk Heterojunction Solar Cells: How the Processing Additive Influences Nanoscale Morphology and Photovoltaic Properties

机译:高效基于邻苯二甲酰亚胺共聚物的本体异质结太阳能电池:加工助剂如何影响纳米级的形貌和光伏性能

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摘要

The power conversion efficiency of poly(N-(2-ethylhexyl)-3,6-bis(4-dodecyloxythiophen-2-yl)phthalimide) (PhBTEH)/fullerene bulk heterojunction solar cells improves from 0.43 to 4.1% by using a processing additive. The underlying mechanism for the almost 10-fold enhancement in solar cell performance is found to be inhibition of fullerene intercalation into the polymer side chains and regulation of the relative crystallization/aggregation rates of the polymer and fullerene. An optimal interconnected two-phase morphology with 15–20 nm domains is obtained when a processing additive is used compared with 100–300 nm domains without the additive. The results demonstrate that a processing additive provides an effective means of controlling both the fullerene intercalation in polymer/fullerene blends and the domain sizes of their phase-separated nanoscale morphology.
机译:聚(N-(2-乙基己基)-3,6-双(4-十二烷基氧基噻吩-2-基)邻苯二甲酰亚胺)(PhBTEH)/富勒烯本体异质结太阳能电池的功率转换效率通过使用处理从0.43提高到4.1%添加剂。发现将太阳能电池性能提高近10倍的基本机理是抑制富勒烯嵌入聚合物侧链中以及调节聚合物和富勒烯的相对结晶/聚集速率。当使用加工添加剂时,与没有添加剂的100–300 nm域相比,可获得具有15–20 nm域的最佳互连两相形态。结果表明,加工助剂提供了控制聚合物/富勒烯共混物中富勒烯插层及其相分离的纳米级形态的域大小的有效手段。

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