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Cu2ZnSnS4 thin film growth optimization and post rapid thermal annealing of solar cells and its influence on device performance

机译:Cu2ZnSnS4薄膜的生长优化和太阳能电池的快速热退火及其对器件性能的影响

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We investigated the synthesis of kesterite CuZnSnS (CZTS) thin films using thermal evaporation from copper (Cu), zinc (Zn) and tin (Sn) pellets and post-annealing in a sulfur atmosphere. Two different metal precursor stacking orders (Cu/Sn/Zn/Cu and Cu/Sn/Cu/Zn) have been tested and experimental results prove that a layer of Cu on the top provides higher compositional uniformity and fewer secondary phases. CZTS thin films produced by a Cu/Sn/Zn/Cu precursor stacking order was used to study post rapid thermal annealing (RTA) influence on solar cell performance. The best performing solar cell using the CZTS thin film mentioned above with composition ratio Cu/(Zn+Sn) = 0.82, and Zn/Sn = 1.35 exhibited an open-circuit voltage of 433 mV, a short-circuit current of 7.78 mA/cm, a fill factor of 46.23% and a conversion efficiency of 1.56%. Post RTA was conducted and an increase of device performance was observed. The solar cell which shows 1.56% at room temperature shows 2.72% efficiency after RTA at 350°C for 30 seconds. The cell performance improvement mechanism was studied.
机译:我们研究了通过从铜(Cu),锌(Zn)和锡(Sn)球团中热蒸发并在硫气氛中进行后退火,来合成钙钛矿型CuZnSnS(CZTS)薄膜。测试了两种不同的金属前驱体堆叠顺序(Cu / Sn / Zn / Cu和Cu / Sn / Cu / Zn),实验结果证明顶部的Cu层提供了更高的组成均匀性和更少的第二相。使用Cu / Sn / Zn / Cu前驱体堆叠顺序生产的CZTS薄膜用于研究快速热退火(RTA)对太阳能电池性能的影响。使用上述CZTS薄膜,Cu /(Zn + Sn)= 0.82和Zn / Sn = 1.35的最佳性能的太阳能电池表现出433 mV的开路电压,7.78 mA / s的短路电流厘米,填充系数为46.23%,转换效率为1.56%。进行了RTA后,观察到了设备性能的提高。在室温下显示1.56%的太阳能电池在350°C下进行RTA 30秒后显示出2.72%的效率。研究了电池性能的改善机理。

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