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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Tuning the central fused ring and terminal units to improve the photovoltaic performance of Ar(A-D)(2) type small molecules in solution-processed organic solar cells
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Tuning the central fused ring and terminal units to improve the photovoltaic performance of Ar(A-D)(2) type small molecules in solution-processed organic solar cells

机译:调整中心稠环和末端单元,以提高溶液处理的有机太阳能电池中Ar(A-D)(2)型小分子的光伏性能

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Low band-gap A-Ar-A and Ar(A-D)(2) type small molecules (SMs) of DPP2Py, ThDPP2Py and TPADPP(2)Py were designed and synthesized, in which pyrene (Py) and diketopyrrolopyrrole (DPP) were respectively used as central aryl (Ar) and arm acceptor (A) units and 2-octylthiophene (Th) and triphenylamine (TPA) were employed as terminal donor (D) units. The effects of the central aryl and terminal units on optical, electrochemical, morphological and photovoltaic properties were primarily investigated. Compared to the reported analogues of DPP2Ar, in which Ar respectively represents 1,4-phenylene,2,6-naphthalene and 2,6-anthracene, both DPP2Py and ThDPP2Py showed significantly improved photovoltaic performance in solution-processed organic solar cells. Furthermore, ThDPP2Py exhibited better photovoltaic performance than DPP2Py in these cells under optimized processing conditions. An improved power conversion efficiency (PCE) of 5.88% with a short current density (J(sc)) of 15.35 mA cm(-2) and a fill factor (FF) of 57.89% was obtained for the ThDPP2Py based OPV cells. Our research result demonstrates that properly extending the central aryl ring and appending terminal units in A-Ar-A type SMs can significantly improve the photovoltaic performance of Ar(A-D)(2) type SMs.
机译:设计并合成了DPP2Py,ThDPP2Py和TPADPP(2)Py的低带隙A-Ar-A和Ar(AD)(2)型小分子(SMs),其中pyr(Py)和二酮吡咯并吡咯(DPP)是分别用作中心芳基(Ar)和臂受体(A)单元,将2-辛基噻吩(Th)和三苯胺(TPA)用作末端给体(D)单元。主要研究了中心芳基和末端单元对光学,电化学,形态和光伏性质的影响。与报道的DPP2Ar类似物(其中Ar分别代表1,4-亚苯基,2,6-萘和2,6-蒽)相比,DPP2Py和ThDPP2Py在溶液处理的有机太阳能电池中均显示出显着改善的光伏性能。此外,在优化的处理条件下,ThDPP2Py在这些电池中表现出比DPP2Py更好的光伏性能。基于ThDPP2Py的OPV电池获得了5.8%的改进的功率转换效率(PCE),短电流密度(J(sc))为15.35 mA cm(-2),填充因子(FF)为57.89%。我们的研究结果表明,适当延长A-Ar-A型SM的中心芳基环并附加末端单元可以显着提高Ar(A-D)(2)型SM的光伏性能。

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