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Organic photovoltaic devices with enhanced efficiency processed from non-halogenated binary solvent blends

机译:有机光伏器件,由非卤化二元溶剂混合物加工而成,效率更高

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摘要

The development of processing routes to fabricate organic photovoltaic devices (OPVs) using non-halogenated solvents is a necessary step towards their eventual commercialisation. To address this issue, we have used Hansen solubility parameter analysis to identify a non-halogenated solvent blend based on a mixture of carbon disulphide and acetone. This solvent blend was then used to deposit a donor–acceptor polymer–fullerene thin-film that was then used as the active layer of bulk-heterojunction OPV. For the benchmark polymer:fullerene system PCDTBT:PC70BM, a power conversion efficiency of 6.75% was achieved; a 20% relative improvement over reference cells processed using the chlorinated-solvent chlorobenzene. Improvements in device efficiency are attributed to an increase in electron and hole conductivity resulting from enhanced fullerene crystallisation; a property that leads to enhanced device efficiency through improved charge extraction.
机译:开发使用非卤代溶剂制造有机光伏器件(OPV)的工艺路线是实现其最终商业化的必要步骤。为解决此问题,我们已使用Hansen溶解度参数分析来确定基于二硫化碳和丙酮的混合物的非卤代溶剂共混物。然后将这种溶剂混合物用于沉积供体-受体聚合物-富勒烯薄膜,然后将其用作本体-异质结OPV的活性层。对于基准聚合物:富勒烯体系PCDTBT:PC70BM,功率转换效率达到6.75%。与使用氯化溶剂氯苯处理过的参比电池相比,相对改善了20%。器件效率的提高归因于富勒烯结晶增强导致电子和空穴电导率的提高;通过改善电荷提取来提高器件效率的特性。

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