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Key Parameters Requirements for Non‐Fullerene‐Based Organic Solar Cells with Power Conversion Efficiency 20

机译:功率转换效率 20%的非富勒烯基有机太阳能电池的关键参数要求

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摘要

The reported power conversion efficiencies (PCEs) of nonfullerene acceptor (NFA) based organic photovoltaics (OPVs) now exceed 14% and 17% for single‐junction and two‐terminal tandem cells, respectively. However, increasing the PCE further requires an improved understanding of the factors limiting the device efficiency. Here, the efficiency limits of single‐junction and two‐terminal tandem NFA‐based OPV cells are examined with the aid of a numerical device simulator that takes into account the optical properties of the active material(s), charge recombination effects, and the hole and electron mobilities in the active layer of the device. The simulations reveal that single‐junction NFA OPVs can potentially reach PCE values in excess of 18% with mobility values readily achievable in existing material systems. Furthermore, it is found that balanced electron and hole mobilities of >10−3 cm2 V−1 s−1 in combination with low nongeminate recombination rate constants of 10−12 cm3 s−1 could lead to PCE values in excess of 20% and 25% for single‐junction and two‐terminal tandem OPV cells, respectively. This analysis provides the first tangible description of the practical performance targets and useful design rules for single‐junction and tandem OPVs based on NFA materials, emphasizing the need for developing new material systems that combine these desired characteristics.
机译:现在报道的基于非富勒烯受体(NFA)的有机光伏(OPV)的功率转换效率(PCE)分别超过了单结和两端串联电池的14%和17%。但是,增加PCE进一步需要对限制器件效率的因素有更好的了解。在这里,借助数字设备模拟器检查了基于单结和两端串联NFA的OPV电池的效率极限,该模拟器考虑了活性物质的光学性质,电荷复合效应以及器件有源层中的空穴和电子迁移率。仿真结果表明,单结NFA OPV可能会达到超过18%的PCE值,而在现有材料系统中很容易获得迁移率值。此外,发现平衡的电子和空穴迁移率> 10 −3 cm 2 V -1 s -1 与较低的非gegeming重组速率常数10 −12 cm 3 s -1 结合可能导致PCE值超过20%单结和两末端串联OPV电池分别为25%和25%。该分析首次对基于NFA材料的单结和串联式OPV的实际性能目标和有用的设计规则进行了切实的描述,强调了开发结合这些所需特性的新材料系统的必要性。

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