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The impact of the carrier concentration and recombination current on the p~+ pn CZTS thin film solar cells

机译:载流子浓度和重组电流对P〜+ Pn CZTS薄膜太阳能电池的影响

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摘要

One of the main causes of low performance of Cu_2ZnSnS_4 (CZTS) based thin film solar cells is its high recombination current. In this paper, the effects of the carrier concentration and recombination current in the CZTS thin film solar cells have been carefully scrutinized. In continue, for comparison and validation, two simulated structures based on the CZTS absorber layer have been reproduced and the influence of the absorber layer defects and carrier concentration has been analyzed. In this work, two different structures using p~+-CZTS intermediate layer (between the CZTS absorber layer and Mo back-contact) and dual CZTS layer have been proposed and optimized to decrease recombination and extract the desired photovoltaic parameters. By using and optimizing these structures as p~+pn junction, 15.62% and 19.08% efficiencies have been achieved in p~+-CZTS intermediate layer and p~+pn CZTS dual layer structures, respectively. The highest efficiency of dual absorber based solar cell is achieved when the carrier concentration of the p~+-CZTS and p-CZTS absorber layers is 1×10~(18) cm~(-3) and 5×10~(15) cm~(-3), respectively. Moreover, the optimum thickness of the p~+-CZTS and p-CZTS absorber layers in p~+pn CZTS dual layer structure is 1 and 1.5 μm, respectively. Finally, the total recombination current density is reduced to 2.05 mA/cm~2.
机译:基于Cu_2ZnSNS_4(CZTS)的薄膜太阳能电池的低性能的主要原因之一是其高重组电流。本文仔细地仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细仔细审查。继续,为了比较和验证,已经再现了基于CZTS吸收层的两个模拟结构,并分析了吸收层缺陷和载体浓度的影响。在这项工作中,已经提出了两个不同的结构(使用P +)中间层(在CZTS吸收层和MO背触点之间)和双CZT层之间,并优化以降低重组并提取所需的光伏参数。通过使用并优化这些结构,作为P〜+ Pn结,P + -CZTS中间层和P + PN CZTS双层结构分别实现了15.62%和19.08%效率。当P〜+ -CZTS和P-CZTS吸收层的载体浓度为1×10〜(18)cm〜(-3)和5×10〜(15)时,达到基于双吸收剂的太阳能电池的最高效率。 CM〜(-3)分别。此外,P + PN CZTS双层结构中P + -CZTS和P-CZTS吸收层的最佳厚度分别为1和1.5μm。最后,总重组电流密度降至2.05mA / cm〜2。

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