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Embedded inkjet printed silver grids for ITO-free organic solar cells with high fill factor

机译:嵌入式喷墨印刷银栅格,适用于无ITO高填充因子的有机太阳能电池

摘要

We combine inkjet printed silver grids and reverse nanoimprinting transfer to demonstrate front electrode structures embedded within the substrate for indium tin oxide (ITO) replacement in organic solar cells. The smooth interface between Ag grid and transparent semiconductor polymer PEDOT:PSS improves the topology of the successive layers. In turn, this results in overall good photovoltaic performance including high fill factor and no shunting. By modelling the shadowing and resistive losses as a function of the separation between grid lines, the optimal grid structure is identified, which we then confirm experimentally. Inkjet printed ITO-free solar cells showed slightly higher performance than the ITO based reference.
机译:我们结合了喷墨印刷的银网格和反向纳米压印转移,以证明嵌入在基板中的前电极结构可替代有机太阳能电池中的铟锡氧化物(ITO)。 Ag网格和透明半导体聚合物PEDOT:PSS之间的光滑界面改善了连续层的拓扑。反过来,这导致总体上具有良好的光伏性能,包括高填充系数且无分流。通过将阴影和电阻损耗建模为网格线间距的函数,可以确定最佳的网格结构,然后通过实验进行确认。喷墨印刷的无ITO太阳能电池的性能比基于ITO的参考电池略高。

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