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首页> 外文期刊>RSC Advances >3D-printing Ag-line of front-electrodes with optimized size and interface to enhance performance of Si solar cells
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3D-printing Ag-line of front-electrodes with optimized size and interface to enhance performance of Si solar cells

机译:电极的3D打印Ag-line具有优化的尺寸和界面,可增强Si太阳能电池的性能

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摘要

The power conversion efficiency (PCE) of a Si solar cell strongly depends on the line width (LW) of the Ag front electrode lines and the quality of the Ag/Si interface (ASI). However, the correlation between these two aspects and the cell efficiency has not been systematically investigated before because of the difficulty to control the LW of the electrode line. In this work, a self-designed 3D-printing equipment was built. Based on it, we implement the printing of electrode lines with the controllable LW by systematically investigating various parameters, including the rheological characteristics of the silver paste and the printing parameters, such as nozzle inner diameter, pressure, stage speed and gap between nozzle and wafer. When applying electrode lines with different LWs on Si solar cells, a nearly linear relationship between the cell efficiency and the LW was found. Notably, a LW of 40 mm was achieved by using a nozzle with the inner diameter of 100 mm and controlling the printing parameters. When 3D-printed Ag front electrode lines with the LW of 40 mm were applied on Si solar cells, an about 1% efficiency improvement was implemented compared with the industrial Si solar cell. This efficiency improvement not only originated from the increasing radiation area by the narrower LW, but more importantly from the optimized ASI confirmed by the sectional TEM images. This study provides helpful guidance for future fabrication of front electrodes with optimized LW and ASI to improve the PCE of Si solar cells.
机译:Si太阳能电池的功率转换效率(PCE)很大程度上取决于Ag前电极线的线宽(LW)和Ag / Si界面(ASI)的质量。但是,由于难以控制电极线的LW,因此尚未对这两个方面与电池效率之间的相关性进行系统研究。在这项工作中,构建了一套自行设计的3D打印设备。在此基础上,我们通过系统地研究各种参数(包括银浆的流变特性和打印参数,例如喷嘴内径,压力,工作台速度以及喷嘴与晶圆之间的间隙),以可控制的LW来实现电极线的打印。 。当在Si太阳能电池上施加具有不同LW的电极线时,发现电池效率与LW之间几乎呈线性关系。值得注意的是,通过使用内径为100 mm的喷嘴并控制打印参数,可以实现40 mm的LW。当将3D打印的LW为40 mm的Ag前电极线应用于Si太阳能电池时,与工业Si太阳能电池相比,效率提高了约1%。这种效率的提高不仅源自更窄的LW所增加的辐射面积,而且更重要的是源自截面TEM图像确认的优化ASI。这项研究为未来制造具有优化的LW和ASI的前电极提供了有益的指导,以改善Si太阳能电池的PCE。

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