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Roll coated large area ITO- and vacuum-free all organic solar cells from diketopyrrolopyrrole based non-fullerene acceptors with molecular geometry effects

机译:辊涂大面积ITO-和无真空的所有有机太阳能电池来自基于二酮吡咯并吡咯的非富勒烯受体,具有分子几何效应

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摘要

In this paper, we investigate three diketopyrrolopyrrole (DPP) based small molecular non-fullerene acceptors, namely Ph(DPP), Ph(DPP), and PhDMe(DPP), focusing on molecular geometry effects on the frontier orbital level, light absorption, molecular configuration, electron mobility, thin film morphology, and photovoltaic performance of both spin-coated ITO based and roll coated large area, ITO- and vacuum-free organic solar cells (OSCs). For spin-coated devices based on P3HT as the donor polymer the solar cells gave power conversion efficiencies (PCEs) in the following order for (P3HT:PhDMe(DPP), 0.65%) (P3HT:Ph(DPP), 0.48%) (P3HT:Ph(DPP), 0.31%). All devices present an open circuit voltage (V) higher than 1.0 V. For the roll-coated devices, the PCEs were found to fall in another order and with lower values (P3HT:Ph(DPP), 0.54%) (P3HT:Ph(DPP), 0.43%) (P3HT:PhDMe(DPP), 0.04%) and the highest Vwas 0.82 V. Our preliminary results highlight the influence of geometry, structure and processing on the performance of non-fullerene acceptors.
机译:在本文中,我们研究了三种基于二酮基吡咯并吡咯(DPP)的小分子非富勒烯受体,即Ph(DPP),Ph(DPP)和PhDMe(DPP),重点研究了分子几何学对前沿轨道水平,光吸收,旋转涂覆的ITO基和辊涂的大面积,无ITO和无真空的有机太阳能电池(OSC)的分子构型,电子迁移率,薄膜形态和光伏性能。对于基于P3HT作为施主聚合物的旋涂器件,太阳能电池按照以下顺序提供功率转换效率(PCE),即(P3HT:PhDMe(DPP),0.65%)>(P3HT:Ph(DPP),0.48%) >(P3HT:Ph(DPP),0.31%)。所有设备的开路电压(V)均高于1.0 V.对于辊涂设备,发现PCE呈另一个顺序下降,且值较低(P3HT:Ph(DPP),0.54%)>(P3HT: Ph(DPP),0.43%)>(P3HT:PhDMe(DPP),0.04%),最高Vwas为0.82V。我们的初步结果突出了几何形状,结构和加工对非富勒烯受体性能的影响。

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