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MOCVD of Cd(1-x)Zn(x)S/CdTe PV cells using an ultra-thin absorber layer

机译:使用超薄吸收层的Cd(1-x)Zn(x)S / CdTe PV电池的MOCVD

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摘要

Ultra-thin Cd(₁ ₋ ₓ)Zn(ₓ)S/CdTe devices were produced by atmospheric pressure metal organic chemical vapour deposition (AP-MOCVD) with varying CdTe absorber thicknesses ranging from 1.0 to 0.2 mm and compared to baseline cells with total CdTe thickness of 2.25μ. The ultra-thin CdTe layers (≤1 μm) were intentionally doped with As to induce p-type conductivity in the absorber. Cell performance reduced with CdTe thickness, with the magnitude of photo-current generation loss becoming more significant for the very thin CdTe layers. The decline in cell performance was lower than the optically limited performance relating to a decrease in shunt resistance, Rsh, especially for the thinnest cells due to areas of incomplete CdTe coverage and large presence of pin-holes leading to micro-shorts. Incorporation of Zn into the CdS window layer improved cell performance for all devices except when 0.2 μm thick CdTe was used. This improvement was markedly in the blue region owing to enhanced optical transparency of the window layer. External quantum efficiency (EQE) measurements showed a red-shift of the window layer absorption edge due to leaching out of Zn during the CdCl₂ treatment. Reduction of the CdCl₂ deposition time was demonstrated to recover the blue response of the ultra-thin cells.
机译:通过大气压金属有机化学气相沉积(AP-MOCVD)生产的超薄Cd(Zn)S(ZnS)/ CdTe器件,其CdTe吸收层厚度在1.0到0.2 mm之间变化,并与基线电池进行了比较。 CdTe厚度为2.25μ。在超薄CdTe层(≤1μm)中故意掺入As,以在吸收体中引入p型导电性。电池性能随CdTe厚度的降低而降低,对于非常薄的CdTe层,光电流产生损失的幅度变得更加明显。电池性能的下降低于与分流电阻Rsh降低相关的光学性能下降,尤其是对于最薄的电池而言,这是由于CdTe覆盖范围不完整以及存在大量针孔而导致微短路的原因。除使用0.2μm厚的CdTe外,将Zn掺入CdS窗口层可改善所有器件的电池性能。由于窗口层的光学透明性的增强,这种改进在蓝色区域显着。外部量子效率(EQE)测量表明,由于在CdCl 2处理过程中锌的浸出,窗口层吸收边缘发生了红移。事实证明,减少CdCl 2的沉积时间可以恢复超薄电池的蓝色响应。

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