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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Flexible kesterite Cu2ZnSnS4 solar cells with sodium-doped molybdenum back contacts on stainless steel substrates
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Flexible kesterite Cu2ZnSnS4 solar cells with sodium-doped molybdenum back contacts on stainless steel substrates

机译:柔性KETTERITE CU2ZNSS4太阳能电池,具有钠掺杂的钼背面接触在不锈钢基板上

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摘要

In this work we report the Na incorporation from Na-doped Mo (Mo-Na) back contact for kesterite Cu2ZnSnS4 solar cells on flexible stainless steel substrates. It is demonstrated that Na can be effectively incorporated into CZTS by inserting Mo-Na layer at back contact. Direct contact of CZTS and Mo-Na layer leads to poor homogeneity and adhesion. The thickness of MoS2 formed at the back contact depends on the presence of Na and whether Mo contacts with CZTS directly. Back contact configuration with a Mo capping layer on Mo-Na layer is found to be helpful to maintain the advantages of Mo back contact and control the thickness of MoS2 interface. As a result, CZTS device fabricated on this configuration yields higher conversion efficiency of 6.2%. However, this efficiency is still far lower than that on traditional soda lime glass substrate which shows efficiency over 8%. The loss mechanism of device fabricated on stainless steel is investigated and analyzed according to the device performance and electrical parameters.
机译:在这项工作中,我们向柔性不锈钢基板上的KETERTITE CU2ZNSNS4太阳能电池报告从Na掺杂的MO(MO-NA)背面接触的NA掺入。证明Na可以通过在后触头插入Mo-Na层来有效地掺入CZT中。 CZTS和Mo-Na层的直接接触导致均匀性和粘合性差。在后触点处形成的MOS2的厚度取决于Na的存在以及是否直接与CZTS接触。发现使用Mo-Na层上的Mo覆盖层的后接触配置有助于保持Mo背接触的优点并控制MOS2接口的厚度。结果,在该配置上制造的CZTS装置产生6.2%的更高转化效率。然而,这种效率仍然远低于传统的苏打石灰玻璃基板,其显示出超过8%的效率。根据器件性能和电气参数研究并分析了在不锈钢上制造的装置的损耗机理。

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