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Fluorine- and tin-doped indium oxide films grown by ultrasonic spray pyrolysis: Characterization and application in bifacial silicon concentrator solar cells

机译:超声喷雾热解法生长的掺氟和锡的氧化铟薄膜:表征和在双面硅聚光太阳能电池中的应用

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Multi-wire metallization and interconnection for silicon solar cells is considered as a revolutionary technology for the next generation of photovoltaic modules, since it drastically reduces their cost while boosting efficiency. In this paper, we report results obtained using an innovative approach for the fabrication of bifacial low-concentrator Ag-free Cz-Si (Czochralski silicon) solar cells based on an indium fluorine oxide (IFO)/(n(+) pp(+))Cz-Si/indium tin oxide (ITO) structure. Transparent conducting oxide (TCO) layers, IFO and ITO, acting as antire-flection electrodes, were grown by ultrasonic spray pyrolysis (USP). A copper wire contact pattern was attached by low-temperature lamination simultaneously to the front and rear TCO layers as well as to the interconnecting ribbons located outside the structure (laminated grid cell (LGCell) design). In this paper, to extend the operating range of sunlight concentration ratios of LGCells, the sheet resistance of the IFG and ITO layers has been reduced to 14 and 13 Omega/sq, respectively, by increasing their thickness by about three times, from similar to 85 to similar to 240 nm. As a result, the operating range of the LGCells has been extended to 1-7 suns. In the operating range, their front illumination efficiency varies from 18.3 to 18.9% (back-illumination efficiency from 15.1 to 15.6%). We also report for the first time the results of systematic analysis of USP IFO properties and compare them with the USP ITO properties. The effect of the IFO thickness on grain size, electrical resistivity, charge carrier concentration and mobility, refractive index, transmission and absorption spectra, as well as optical band gap has been analyzed systematically by scanning electron microscopy, transmission and reflection spectra, optical ellipsometry and Hall measurements.
机译:硅太阳能电池的多线金属化和互连技术被认为是下一代光伏模块的一项革命性技术,因为它可以在降低成本的同时提高效率。在本文中,我们报告了使用创新方法获得的基于铟氟氧化物(IFO)/(n(+)pp(+)的双面低浓度无铅无Cz-Si(直拉硅)太阳能电池的制造结果。 )Cz-Si /铟锡氧化物(ITO)结构。透明导电氧化物(TCO)层,IFO和ITO,用作抗反射电极,通过超声喷雾热解(USP)生长。通过低温层压将铜线接触图案同时连接到前后TCO层以及位于结构外部的互连带(层压网格单元(LGCell)设计)。在本文中,为了扩展LGCells的日光集中率的工作范围,通过将其厚度增加大约三倍,IFG和ITO层的薄层电阻已分别减小至14和13 Omega / sq。 85至类似于240 nm。结果,LGCells的工作范围已扩展到1至7个太阳。在工作范围内,它们的前照明效率在18.3至18.9%之间变化(后照明效率在15.1至15.6%之间)。我们还将首次报告USP IFO性能的系统分析结果,并将其与USP ITO性能进行比较。已通过扫描电子显微镜,透射和反射光谱,光学椭偏和光学显微镜系统分析了IFO厚度对晶粒尺寸,电阻率,电荷载流子浓度和迁移率,折射率,透射和吸收光谱以及光学带隙的影响。霍尔测量。

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