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Heterojunction diodes and solar cells fabricated by sputtering of GaAs on single crystalline Si

机译:通过在单晶硅上溅射Gaas制造的异质结二极管和太阳能电池

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摘要

This work reports fabrication details of heterojunction diodes and solar cells obtained by sputter deposition of amorphous GaAs on p-doped single crystalline Si. The effects of two additional process steps were investigated: A hydrofluoric acid (HF) etching treatment of the Si substrate prior to the GaAs sputter deposition and a subsequent annealing treatment of the complete layered system. A transmission electron microscopy (TEM) exploration of the interface reveals the formation of a few nanometer thick SiO2 interface layer and some crystallinity degree of the GaAs layer close to the interface. It was shown that an additional HF etching treatment of the Si substrate improves the short circuit current and degrades the open circuit voltage of the solar cells. Furthermore, an additional thermal annealing step was performed on some selected samples before and after the deposition of an indium tin oxide (ITO) film on top of the a-GaAs layer. It was found that the occurrence of surface related defects is reduced in case of a heat treatment performed after the deposition of the ITO layer, which also results in a reduction of the dark saturation current density and resistive losses.
机译:这项工作报告了异质结二极管和太阳能电池的制造细节,这些异质结二极管和太阳能电池是通过在p掺杂单晶Si上溅射沉积非晶GaAs而获得的。研究了另外两个工艺步骤的效果:在GaAs溅射沉积之前对Si基板进行氢氟酸(HF)蚀刻处理,以及对整个分层系统进行后续退火处理。界面的透射电子显微镜(TEM)探索揭示了几纳米厚的SiO2界面层的形成以及靠近界面的GaAs层的某些结晶度。结果表明,对硅衬底进行额外的HF蚀刻处理可改善短路电流并降低太阳能电池的开路电压。此外,在a-GaAs层的顶部上沉积铟锡氧化物(ITO)膜之前和之后,对一些选定的样品执行了额外的热退火步骤。已经发现,在沉积ITO层之后进行热处理的情况下,减少了与表面有关的缺陷的发生,这也导致了暗饱和电流密度和电阻损耗的降低。

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