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Effect of Subgrains on the Performance of Mono-Like Crystalline Silicon Solar Cells

机译:亚晶粒对单晶硅晶体硅太阳能电池性能的影响

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The application of Czochralski (Cz) monocrystalline silicon material in solar cells is limited by its high cost and serious light-induced degradation. The use of cast multicrystalline silicon is also hindered by its high dislocation densities and high surface reflectance after texturing. Mono-like crystalline silicon is a promising material because it has the advantages of both mono- and multicrystalline silicon. However, when mono-like wafers are made into cells, the efficiencies of a batch of wafers often fluctuate within a wide range of >1% (absolute). In this work, mono-like wafers are classified by a simple process and fabricated into laser doping selective emitter cells. The effect and mechanism of subgrains on the performance of mono-like crystalline silicon solar cells are studied. The results show that the efficiency of mono-like crystalline silicon solar cells significantly depends on material defects that appear as subgrains on an alkaline textured surface. These subgrains have an almost negligible effect on the optical performance, shunt resistance, and junction recombination but significantly affect the minority carrier diffusion length and quantum efficiency within a long wavelength range. Finally, an average efficiency of 18.2% is achieved on wafers with hardly any subgrain but with a small-grain band.
机译:切克劳斯基(Cz)单晶硅材料在太阳能电池中的应用受到其高成本和严重的光诱导降解的限制。铸造多晶硅的使用还因其高位错密度和纹理化后的高表面反射率而受到阻碍。类单晶硅是有前途的材料,因为它具有单晶硅和多晶硅的优点。然而,当将单片式晶片制成电池时,一批晶片的效率通常在大于1%(绝对值)的范围内波动。在这项工作中,单晶硅片通过简单的工艺进行分类,然后制成激光掺杂的选择性发射极单元。研究了亚晶对单晶硅太阳能电池性能的影响及其机理。结果表明,单晶硅太阳能电池的效率极大地取决于材料缺陷,这些缺陷以亚晶粒的形式出现在碱性纹理表面上。这些亚晶粒对光学性能,分流电阻和结重组的影响几乎可以忽略不计,但在长波长范围内会显着影响少数载流子的扩散长度和量子效率。最终,几乎没有任何亚晶粒但具有小晶粒带的晶片的平均效率达到了18.2%。

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