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Solution-processed carrier selective layers for high efficiency organic/nanostructured-silicon hybrid solar cells

机译:Solution-processed选择性载体层有机/ nanostructured-silicon效率高混合太阳能电池

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摘要

The reduction of interface minority carrier recombination is regarded as a key performance indicator in improving the power conversion efficiency (PCE) of organic-inorganic hybrid solar cells. In this study, we chose two kinds of carrier-selective layers to be applied in a hybrid solar cell device. A hole selective transporting layer of N,N'-bis(3-methylphenyl)-N,N'-diphenylbenzidine (TPD) was added to the interface between Si nanohole structures and PEDOT: PSS, and the electron selective layer cesium carbonate (Cs2CO3) was added to the interface between the backside Si wafer and the rear Ti/Ag electrode. The main process used a clean and low-cost solution process, and the annealed temperature was under 140 degrees C. In addition, after we inserted these two carrier selective layers, the minority carrier lifetime was prolonged from 29.98 mu s to 140.81 mu s, indicating its significance in reducing the recombination rate. Eventually, we demonstrated that the PCE of Si/organic heterojunction solar cells can be improved to 13.23%.
机译:降低少数载流子的界面重组被认为是一个关键性能指示器在改善电力转换有机-无机杂化的效率(PCE)太阳能电池。carrier-selective层中应用混合太阳能电池设备。运输层N, N”个(3-methylphenyl休息),N’-diphenylbenzidine(兼总经理)添加到Si之间的接口nanohole结构和PEDOT: PSS,电子选择性层碳酸铯(Cs2CO3)之间的接口背后硅晶片和后方Ti / Ag)电极。干净的和低成本的使用的主要过程解决方案过程中,退火温度在140度c。另外,在我们吗插入这两个载体选择性层,少数载流子寿命很长时间29.98μs 140.81μs,说明它意义在减少重组率。最后,我们证明了PCESi /有机异质结太阳能电池提高到13.23%。

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