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Impact of the Crystalline Packing Structures on Charge Transport and Recombination via Alkyl Chain Tunability of DPP-Based Small Molecules in Bulk Heterojunction Solar Cells

机译:晶体堆积结构对电荷输运和重组的影响,基于烷基链可调性的DPP基小分子在异质结太阳能电池中。

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A series of small compound materials based on benzodithiophene (BDT) and diketopyrrolopyrrole (DPP) with three different alkyl side chains were synthesized and used for organic photovoltaics. These small compounds had different alkyl branches (i.e., 2-ethylhexyl (EH), 2-butyloctyl (BO), and 2-hexyldecyl (HD)) attached to DPP units. Thin films made of these compounds were characterized and their solar cell parameters were measured in order to systematically analyze influences of the different side chains of compounds on the film microstructure, molecular packing, and hence, charge-transport and recombination properties. The relatively shorter side chains in the small molecules enabled more ordered packing structures with higher crystallinities, which resulted in higher carrier mobilities and less recombination factors; the small molecule with the EH branches exhibited the best semiconducting properties with a power conversion efficiency of up to 5.54% in solar cell devices. Our study suggested that tuning the alkyl chain length of semiconducting molecules is a powerful strategy for achieving high performance of organic photovoltaics.
机译:合成了一系列基于苯并二噻吩(BDT)和具有三个不同烷基侧链的二酮吡咯并吡咯(DPP)的小化合物,并将其用于有机光伏。这些小化合物具有连接到DPP单元的不同烷基支链(即2-乙基己基(EH),2-丁基辛基(BO)和2-己基癸基(HD))。对由这些化合物制成的薄膜进行表征,并测量其太阳能电池参数,以便系统地分析化合物不同侧链对薄膜微观结构,分子堆积以及电荷传输和复合性质的影响。小分子中相对较短的侧链使得具有更高结晶度的更有序的堆积结构成为可能,从而导致更高的载流子迁移率和更少的重组因子。具有EH分支的小分子在太阳能电池设备中表现出最佳的半导体性能,功率转换效率高达5.54%。我们的研究表明,调节半导体分子的烷基链长度是实现有机光伏高性能的有力策略。

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