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Effect of CdTe thickness reduction in high efficiency CdS/CdTe solar cells

机译:高效CDS / CDTE太阳能电池CDTE厚度降低的影响

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High efficiency CdTe solar cells are typically grown with CdTe thicknesses from 3 to 15 μm, although the thickness required for 90% absorption of the incident irradiation at 800 nm is only ~1 μm. In this paper, we present the effect of CdTe thickness reduction on the performance of CdS/CdTe solar cells in which both the CdS and CdTe films were grown by sputtering. We produced a series of cells with different CdTe thickness (from 0.5 to 3.0 μm), and held the CdS thickness and back-contact-processing constant. The effect of CdTe thickness reduction on the diffusion of CdS into CdTe was studied using optical absorption and x-ray diffraction techniques. Only slight decreases occur in open-circuit voltage, short-circuit current, and fill factor with decrease in CdTe film thickness to 1.0 μm. Almost 10% efficient cells were obtained with 1 μm CdTe. Below 1 μm, all cell parameters decrease more rapidly, including the red quantum efficiency.
机译:高效CdTe太阳能电池通常以3至15μm的CdTe厚度生长,尽管在800nm处的入射照射的90%吸收所需的厚度仅为〜1μm。在本文中,我们介绍了CdTe厚度降低对Cds / CdTe太阳能电池性能的影响,其中通过溅射生长Cds和CdTe膜。我们生产了一系列具有不同CDTE厚度(0.5至3.0μm)的细胞,并保持CD厚度和背接触处理常数。使用光学吸收和X射线衍射技术研究了CDTE厚度降低对Cds转化Cdte的影响。在开路电压,短路电流,短路电流和填充因子中仅发生略微减少,并且CdTe膜厚度降低至1.0μm。用1μMCDE获得几乎10%的有效细胞。低于1μm,所有细胞参数更快地降低,包括红色量子效率。

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