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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >High efficiency inverted polymeric bulk-heterojunction solar cells with hydrophilic conjugated polymers as cathode interlayer on ITO
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High efficiency inverted polymeric bulk-heterojunction solar cells with hydrophilic conjugated polymers as cathode interlayer on ITO

机译:亲水共轭聚合物作为ITO阴极夹层的高效倒置聚合物体-异质结太阳能电池

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摘要

In this work, alcohol-soluble 2,7-carbazole-1,4-phenylene copolymers PCP-NOH and PCP-EP, comprising surfactant-like diethanolamino and phosphonate end groups on the side chains, respectively, were utilized as cathode interlayer on ITO to construct inverted solar cells based on a low band gap poly(2,7-carbazole) (PCDTBT) as the polymer donor and [6,6]-phenyl C _(71)-butyric acid methyl ester (PC_(71)BM) as the acceptor. The work functions of ITO were shifted to -4.2 and -4.3 eV by PCP-NOH and PCP-EP, respectively, which can well match the LUMO level of PC_(71)BM for good electron extraction. The power conversion efficiency (PCE) of the inverted solar cells without the cathode interlayer was only 1.63%, because of very low open-circuit voltage (V_(oc), 0.48 V) and fill factor (FF, 36.9%). Using PCP-NOH and PCP-EP as cathode interlayers significantly improved V_(oc) to 0.88 V and FF to ~58%, giving PCEs of 5.39% and 5.48%, respectively. The increasing extents of PCEs by the interlayers are over 230%. The PCEs achieved by PCP-NOH and PCP-EP belong to the top device performances so far reported for the inverted PVCs with an organic cathode interlayer. Our results suggest that hydrophilic conjugated polymers are promising candidates as a cathode interlayer in high efficiency inverted solar cells through the modification of interface contacts.
机译:在这项工作中,分别在侧链上包含表面活性剂样二乙醇氨基和膦酸酯端基的醇溶性2,7-咔唑-1,4-亚苯基共聚物PCP-NOH和PCP-EP被用作ITO上的阴极中间层基于低带隙聚(2,7-咔唑)(PCDTBT)作为聚合物供体和[6,6]-苯基C _(71)-丁酸甲酯(PC_(71)BM )作为接受者。 PCP-NOH和PCP-EP分别将ITO的功函数转移到-4.2和-4.3 eV,可以很好地匹配PC_(71)BM的LUMO能级,以实现良好的电子提取。由于极低的开路电压(V_(oc),0.48 V)和填充系数(FF,36.9%),没有阴极夹层的倒置太阳能电池的功率转换效率(PCE)仅为1.63%。使用PCP-NOH和PCP-EP作为阴极夹层可将V_(oc)显着提高至0.88 V,将FF提高至〜58%,使PCE分别达到5.39%和5.48%。中间层对PCE的增加程度超过230%。由PCP-NOH和PCP-EP获得的PCE属于迄今为止报道的具有有机阴极夹层的倒置PVC的顶级器件性能。我们的研究结果表明,亲水性共轭聚合物有望通过修饰界面接触而成为高效倒置太阳能电池中阴极夹层的有希望的候选者。

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