首页> 外文期刊>Frontiers in Chemistry >Utilizing Benzotriazole and Indacenodithiophene Units to Construct both Polymeric Donor and Small Molecular Acceptors to Realize Organic Solar Cells with High Open-Circuit Voltages beyond 1.2 V
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Utilizing Benzotriazole and Indacenodithiophene Units to Construct both Polymeric Donor and Small Molecular Acceptors to Realize Organic Solar Cells with High Open-Circuit Voltages beyond 1.2 V

机译:利用苯并三唑和茚并二噻吩单元构建聚合物供体和小分子受体,以实现具有超过1.2 V的高开路电压的有机太阳能电池

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Devolopment of organic solar cells with high open-circuit voltage (VOC) and power conversion efficiency (PCE) simutaniously plays a significant role, but there is no guideline how to choose the suitable photovoltaic material combinations. In this study, we adopted a simple and feasible strategy by utilizing the same electron-donating unit and electron-accepting segment to construct both polymeric donor and small molecular acceptors. The p-type polymer of PIDT-DTffBTA is designed by inserting conjugated bridge between indacenodithiophene (IDT) and fluorinated benzotriazole (BTA), while the n-type small molecules of BTAx (x = 1, 2, 3) are obtained by introducing different end-capped groups to BTA-IDT-BTA backbone. PIDT-DTffBTA: BTAx (x = 1-3) based photovolatic devices can realize high VOC of 1.21-1.37 V with the very small voltage loss (0.55-0.60 V), while only the PIDT-DTffBTA: BTA3 based device possesses the enough driving force for efficient hole and electron transfer and yields the optimal PCE of 5.67%, which is among the highest value for organic solar cells with a VOC beyond 1.20 V reported so far. Our results provide a simple and effective method to obtain fullerene-free organic solar cells with a high VOC and PCE.
机译:具有高开路电压(VOC)和功率转换效率(PCE)的有机太阳能电池的开发同时起着重要作用,但是如何选择合适的光伏材料组合尚无指导原则。在这项研究中,我们采用一种简单可行的策略,即利用相同的供电子单元和受电子链段来构建聚合物供体和小分子受体。通过在茚并二噻吩(IDT)和氟化苯并三唑(BTA)之间插入共轭桥来设计PIDT-DTffBTA的p型聚合物,而引入不同的BTAx的n型小分子(x = 1,2,3) BTA-IDT-BTA主干的末端封端的组。 PIDT-DTffBTA:基于BTAx(x = 1-3)的光敏器件可以实现1.21-1.37 V的高VOC,而电压损耗很小(0.55-0.60 V),而只有PIDT-DTffBTA:基于BTA3的器件具有足够的电压高效空穴和电子传输的驱动力,可产生5.67%的最佳PCE,这是迄今为止报道的VOC超过1.20 V的有机太阳能电池的最高值之​​一。我们的结果提供了一种简单有效的方法来获得具有较高VOC和PCE的不含富勒烯的有机太阳能电池。

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