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Recent Developments in the Optimization of the Bulk Heterojunction Morphology of Polymer: Fullerene Solar Cells

机译:聚合物的大体积异质结形态优化的最新进展:富勒烯太阳能电池

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摘要

Organic photovoltaic (OPV) devices, made with semiconducting polymers, have recently attained a power conversion efficiency (PCE) over 14% in single junction cells and over 17% in tandem cells. These high performances, together with the suitability of the technology to inexpensive large-scale manufacture, over lightweight and flexible plastic substrates using roll-to-roll (R2R) processing, place the technology amongst the most promising for future harvesting of solar energy. Although OPVs using non-fullerene acceptors have recently outperformed their fullerene-based counterparts, the research in the development of new fullerenes and in the improvement of the bulk-heterojunction (BHJ) morphology and device efficiency of polymer:fullerene solar cells remains very active. In this review article, the most relevant research works performed over the last 3 years, that is, since the year 2016 onwards, in the field of fullerene-based polymer solar cells based on the copolymers PTB7, PTB7-Th (also known as PBDTTT-EFT) and PffBT4T-2OD, are presented and discussed. This review is primarily focused on studies that involve the improvement of the BHJ morphology, efficiency and stability of small active area devices (typically < 15 mm2), through the use of different processing strategies such as the use of different fullerene acceptors, different processing solvents and additives and different thermal treatments.
机译:由半导体聚合物制成的有机光伏(OPV)器件最近在单结电池中的功率转换效率(PCE)超过14%,在串联电池中的功率转换效率(PCE)超过17%。这些高性能以及该技术适用于廉价的大规模制造的技术,适用于采用卷对卷(R2R)处理的轻质和柔性塑料基材,使该技术成为未来收获太阳能最有前途的技术之一。尽管最近使用非富勒烯受体的OPV优于基于富勒烯的受体,但在开发新富勒烯以及改善聚合物:富勒烯太阳能电池的体-异质结(BHJ)形态和器件效率方面的研究仍然非常活跃。在这篇综述文章中,最相关的研究工作是在过去三年中进行的,即自2016年起,在基于共聚物PTB7,PTB7-Th(也称为PBDTTT)的富勒烯基聚合物太阳能电池领域-EFT)和PffBT4T-2OD,进行介绍和讨论。这篇综述主要侧重于通过使用不同的处理策略(例如使用)来改善BHJ形态,小型有源区域器件(通常<15 mm 2 )的效率和稳定性的研究。不同的富勒烯受体,不同的加工溶剂和添加剂以及不同的热处理方法。

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