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首页> 外文期刊>Thin Solid Films >In Situ Monitoring The Growth Of Thin-film Zns/zn(s,o) Bilayer On Cu-chalcopyrite For High Performance Thin Film Solar Cells
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In Situ Monitoring The Growth Of Thin-film Zns/zn(s,o) Bilayer On Cu-chalcopyrite For High Performance Thin Film Solar Cells

机译:原位监测铜黄铜矿上薄膜Zns / zn(s,o)双层薄膜的生长,用于高性能薄膜太阳能电池

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This paper highlights the crucial role that the control of the chemical bath deposition (CBD) process plays for buffer production of Cu-chalcopyrite solar-cell devices. ZnS/Zn(S,O) bilayer was deposited on CuInS_2 (CIS) and Cu(In,Ga)(SSe)_2 (CIGSSe) and monitored using turbidity measurements of the solution. The results were correlated to the X-ray photoemission spectra of the samples obtained by interruption of the process at sequential stages. Two different feature regimes were distinguished: In the first stage, a heterogeneous reaction takes place on the absorber resulting in the formation of pure ZnS. The second stage of the process is homogeneous, and the in-situ turbidity measurement shows a loss in the transmission of light through the CBD solution. The measured ZnL3M45M45 Auger-peaks, during this second stage of the process, show a shift of the kinetic energy from pure ZnS to a solid-solution ZnS/ZnO ("Zn(S,O)") with decreasing amount of sulfur. These results are supported by the observations from Energy-filtered transmission electron microscopy. This paper also demonstrates that monitoring of the CBD process combined with the basic understanding using surface and interface analysis have contributed to improve the reproducibility and to enhance the photovoltaic performance of Cu-chalcopyrite thin-film solar modules.
机译:本文重点介绍了化学浴沉积(CBD)工艺的控制对于Cu-黄铜矿太阳能电池器件缓冲生产的关键作用。 ZnS / Zn(S,O)双层沉积在CuInS_2(CIS)和Cu(In,Ga)(SSe)_2(CIGSSe)上,并使用溶液的浊度测量进行监控。结果与通过在连续阶段中断过程获得的样品的X射线光发射光谱相关。区分了两种不同的特征机制:在第一阶段,吸收器发生异质反应,导致形成纯ZnS。该过程的第二阶段是均匀的,并且原位浊度测量显示通过CBD溶液的光传输损失。在该过程的第二阶段中,测得的ZnL3M45M45 Auger-peaks显示出动能从纯ZnS到固溶ZnS / ZnO(“ Zn(S,O)”)的转移,同时硫的量减少了。这些结果得到能量过滤透射电子显微镜观察的支持。本文还表明,对CBD过程的监测与使用表面和界面分析的基本理解相结合,有助于提高铜黄铜矿薄膜太阳能电池组件的可重复性并增强其光伏性能。

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