首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >An all-small-molecule organic solar cell derived from naphthalimide for solution-processed high-efficiency nonfullerene acceptors
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An all-small-molecule organic solar cell derived from naphthalimide for solution-processed high-efficiency nonfullerene acceptors

机译:用于衍生自萘二甲酰的全部小分子有机太阳能电池,用于加工高效非效率非含量受体

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摘要

Two small molecules BYG-1 and BYG-2 with fluorene donor and benzothiadiazole acceptor units connected to the terminal naphthamide group via ethyne linker were designed and synthesized. In this work we have discussed the effect of fluorine atoms connected with electron withdrawing benzothiadiazole unit to the fluorene core (BYG-1). In this study, we have fabricated solar cells with small-molecular donor and acceptor materials in the device architecture of bulk-heterojunction, using highly conjugated BYG-1 and BYG-2 as electron acceptors along with an appropriate small molecule donor (SMD). After improving the device architecture of the active layer using a suitable donor-to-acceptor weight ratio with solvent vapour annealing, we achieved power conversion efficiencies of 8.67% and 7.12% for BYG-1 and BYG-2, respectively. The superior photovoltaic performance of the fluorine-substituted BYG-1 can be attributed to its higher crystallinity, more balanced charge transport mobilities and efficient exciton dissociation.
机译:设计并合成了两种小分子与芴供体和苯并二氮-2的含氟供体和苯并噻唑接受与萘甲酰胺基团的受体单元设计和合成。在这项工作中,我们讨论了氟原子与电子提取苯并噻唑单元连接到芴核(BYG-1)的影响。在这项研究中,我们在散装杂交的器件架构中具有小分子供体和受体材料的太阳能电池,用高缀合的BYG-1和BYG-2作为电子受体以及适当的小分子供体(SMD)。在使用溶剂蒸汽退火的合适供体与受体重量比改善有源层的器件架构之后,我们分别实现了8.67%和7.12%的功率转化效率,分别对备用碱基-1和含量为7.12%。氟取代的含量的卓越光伏性能可归因于其更高的结晶度,更平衡的电荷运输迁移率和有效的激子解离。

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