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首页> 外文期刊>Physica status solidi >Carrier-Selective Contact Based Silicon Solar Cells Processed at Room Temperature using Industrially Feasible Cz Wafers
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Carrier-Selective Contact Based Silicon Solar Cells Processed at Room Temperature using Industrially Feasible Cz Wafers

机译:使用工业可行的Cz晶片在室温下处理基于载流子选择接触的硅太阳能电池

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摘要

For the broad use of solar photovoltaic devices, the device fabricated at commercially viable silicon wafers at room temperature is more preferable to harvest abundant solar energy. Silicon heterojunction solar cells at room temperature, based on carrier-selective layers without using any specified surface passivation layer on the silicon wafer is fabricated. Industrially feasible Cz n-type non-textured silicon wafers having the bulk lifetime of 300 mu s are used for cell fabrication. The molybdenum oxide (MoOx) and lithium fluoride (LiFx) are used as hole- and electron-selective layers, respectively. The highest conversion efficiency of 15% from the simple architecture of Ag/TCO/MoOx-Si/LiFx/Al is achieved. The internal quantum efficiency of approximate to 96% is observed in the shorter wavelength region, whereas to understand relatively less response between 800 and 1100 nm wavelength region; effective minority carrier diffusion lengths are estimated. The authors also confirm the inversion layer formation in the silicon after MoOx contact from temperature dependent capacitance-voltage measurements, and quantify the crucial built-in-potential of approximate to 0.69 V from the cell structure due to the high work function of MoOx layer.
机译:对于太阳能光伏装置的广泛使用,更优选在室温下在商业上可行的硅晶片上制造的装置以收获大量太阳能。在不使用硅晶片上任何特定表面钝化层的情况下,基于载流子选择层制造了室温下的硅异质结太阳能电池。具有300μs的总寿命的工业上可行的Cz n型非织构硅晶片用于电池制造。氧化钼(MoOx)和氟化锂(LiFx)分别用作空穴选择层和电子选择层。通过简单的Ag / TCO / MoOx / n-Si / LiFx / Al体系结构,可以实现> 15%的最高转换效率。在较短的波长范围内观察到大约96%的内部量子效率,而要了解800和1100 nm波长范围之间的响应相对较小;估计有效少数载流子扩散长度。作者还通过与温度相关的电容-电压测量结果确定了MoOx接触后硅中的反型层的形成,并由于MoOx层的高功函而从电池结构中量化了大约0.69 V的关键内建电压。

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