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Artificially MoO3 graded ITO anodes for acidic buffer layer free organic photovoltaics

机译:不含MoO3的ITO阳极,用于无酸性缓冲层的有机光伏电池

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We report characteristics of MoO3 graded ITO anodes prepared by a RF/DC graded sputtering for acidic poly(3,4-ethylene dioxylene thiophene):poly( styrene sulfonic acid) (PEDOT:PSS)-free organic solar cells (OSCs). Graded sputtering of the MoO3 buffer layer on top of the ITO layer produced MoO3 graded ITO anodes with a sheet resistance of 12.67 Omega/square, a resistivity of 2.54 x 10(-4) Omega cm, and an optical transmittance of 86.78%, all of which were comparable to a conventional ITO anode. In addition, the MoO3 graded ITO electrode showed a greater work function of 4.92 eV than that (4.6 eV) of an ITO anode, which is beneficial for hole extraction from an organic active layer. Due to the high work function of MoO3 graded ITO electrodes, the acidic PEDOT:PSS-free OSCs fabricated on the MoO3 graded ITO electrode exhibited a power conversion efficiency 3.60% greater than that of a PEDOT:PSS-free OSC on the conventional ITO anode. The successful operation of PEDOT:PSS-free OSCs indicates simpler fabrication steps for cost-effective OSCs and elimination of interfacial reactions caused by the acidic PEDOT:PSS layer for reliable OSCs. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们报告了由RF / DC分级溅射制备的MoO3分级ITO阳极的特性,用于无酸的聚(3,4-乙撑二氧二甲苯噻吩):聚(苯乙烯磺酸)(PEDOT:PSS)无有机太阳能电池(OSC)。在ITO层顶部进行MoO3缓冲层的分级溅射,产生了MoO3分级的ITO阳极,其薄层电阻为12.67Ω/平方,电阻率为2.54 x 10(-4)Ω厘米,透光率为86.78%,全部其中可与常规ITO阳极媲美。另外,MoO3分级的ITO电极比ITO阳极的功函(4.6 eV)的功函数更大,为4.92 eV,这对于从有机活性层中提取空穴是有益的。由于MoO3梯度ITO电极的高功函数,在MoO3梯度ITO电极上制造的无PEDOT:PSS酸性OSC的功率转换效率比传统ITO阳极的PEDOT:PSS无OSC的功率转换效率高3.60%。 。不含PEDOT:PSS的OSC的成功运行表明,具有成本效益的OSC的制造步骤更简单,并且消除了酸性PEDOT:PSS层引起的界面反应,从而获得了可靠的OSC。 (C)2015 Elsevier B.V.保留所有权利。

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