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Reversed organic-inorganic hybrid tandem solar cells for improved interfacial series resistances and balanced photocurrents

机译:反向有机-无机混合串联太阳能电池,可改善界面串联电阻和平衡光电流

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摘要

We report a promising approach to fabricate organic-inorganic hybrid tandem photovoltaic devices with a reversed configuration. High bandgap hydrogenated amorphous silicon (a-Si:H) was deposited with plasma-enhanced chemical vapor deposition onto a solution-processed low bandgap organic photovoltaic (OPV) subcell. Two important factors for efficient tandem solar cells, interfacial series resistance (R_(S.int)) and balanced photocurrents, were investigated. The intimate interfacial contact eliminated the R_(S.int), and sufficient transmittance of the OPV front subcell led to the well-balanced photocurrents. As a result, this reversed hybrid tandem device showed an enhanced efficiency of 3.3% and an open-circuit voltage of 1.51V.
机译:我们报告了一种有前途的方法来制造具有反向配置的有机-无机混合串联光伏器件。通过等离子增强化学气相沉积将高带隙氢化非晶硅(a-Si:H)沉积到溶液处理的低带隙有机光伏(OPV)子电池上。研究了有效串联太阳能电池的两个重要因素,即界面串联电阻(R_(S.int))和平衡的光电流。紧密的界面接触消除了R_(S.int),并且OPV前子电池的足够透射率导致光电流平衡。结果,这种反向混合串联装置显示出3.3%的增强效率和1.51V的开路电压。

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