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首页> 外文期刊>Nanotechnology >Combined effect of ZnO nanoripples and solvent additive on the nanomorphology and performance of PTB7-Th: PC71BM organic solar cells
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Combined effect of ZnO nanoripples and solvent additive on the nanomorphology and performance of PTB7-Th: PC71BM organic solar cells

机译:ZnO纳米饼链和溶剂添加剂对PTB7-TH纳米形态和性能的综合作用:PC71BM有机太阳能电池

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In bulk heterojunction organic solar cells (OSCs), nanomorphology of the photoactive layer plays a crucial role in determining photocurrent and fill factor (FF) of OSCs, and therefore it is essential to control the nanomorphology of the photoactive layer to fabricate devices with high power conversion efficiency (PCE). We demonstrate the combined effects of a ZnO nanorippled electron transport layer (ETL) and solvent additive (1,8-diiodooctane (DIO)) on the nanomorphology and performance of a model OSC in an inverted geometry. The photoactive layer in the model OSC is composed of Poly [4,8-bis (5-(2-ethylhexyl)thiophen-2-yl)benzo[1,2-b;4,5-b']dithiophene-2,6-diyl-alt-(4-(2-ethylhexyl)-3- fluorothieno[3,4-b]thiophene-)-2-carboxylate-2-6-diyl] (PTB7-Th):phenyl-C71-butyric acid methyl ester (PC71BM) blend. It is observed that the use of ZnO nanoripples as an ETL and DIO as a solvent additive facilitates the formation of near ideal nanomorphology of bi-continuous interpenetrating network of donor and acceptor. This is confirmed by morphological studies using atomic force microscopy, scanning electron microscopy and transmission electron microscopy. Photo-electrochemical impedance spectroscopy measurements confirm that obtained nanomorphology of bicontinuous interpenetrating network is contributing to the improved device performance. The device with 3 vol% DIO, with underneath ZnO nanoripples exhibited improved current density (J(sc)), FF, open circuit voltage (V-oc) and PCE of 15.57 mA cm(-2), 64.50%, 0.81V and 8.20%, respectively.
机译:在本体异质结有机太阳能电池(OSC),光敏层的nanomorphology起着决定的光电流以及OSC的填充因子(FF)至关重要的作用,并因此对光敏层的nanomorphology控制与高功率制造器件是必不可少转换效率(PCE)。我们证明在倒置几何nanomorphology和模型OSC性能的氧化锌nanorippled电子传输层(ETL)和溶剂添加剂(1,8-二碘辛烷(DIO))的组合效应。在模型OSC光敏层由聚[4,8-双(5-(2-乙基己基)噻吩-2-基)苯并[1,2-b中的; 4,5-b']二-2, -1,6-二基 - 交替 - (4-(2-乙基己基)-3- fluorothieno [3,4-b]噻吩 - ) - 2-甲酸乙酯-2-6二基](PTB7-TH):苯基C71丁酸甲酯(PC 71 BM)共混物。据观察,使用的ZnO nanoripples的作为ETL和DIO作为溶剂添加剂有利于给体和受体的双连续互穿网络的接近理想nanomorphology的形成。这是通过使用原子力显微镜,扫描电子显微镜和透射电子显微镜的形态学研究证实。光电化学阻抗谱测量证实,所获得的双连续互穿网络的nanomorphology正在促进改进的器件性能。用3体积%DIO的装置,用下面的ZnO nanoripples表现出改善的电流密度(j(SC)),FF,开路电压(V-α)和的15.57毫安厘米(-2),64.50%,PCE 0.81V和8.20%之间。

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