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Transparent conductors and buffer layers for CdTe solar cells

机译:CdTe太阳能电池的透明导体和缓冲层

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Thin film CdTe solar cells are typically of the supertrate configuration where the junction is fabricated on a glass substrate coated with a transparent conducting oxide that serves as the front contact. The most commonly used transparent contacts are SnO_2 and ITO, due to their electro-optical properties and chemical and thermal stability. Binary and ternary transparent oxides of Cd, In, Zn, and Sn have been prepared by sputtering and chemical vapor deposition, and their structural and electro-optical properties have been investigated. Most sputter-deposited films were deposited at room temperature and subsequently annealed in order to improve their structural and electrical properties. The performance of CdTe solar cells has been studied for various combinations of transparent oxides that included the use of bilayer structures, where a resistive or buffer layer was deposited on top of the conductive oxide. The use of a buffer layer has been found to improve solar cell performance in particular when the CdS thickness is relatively small. Several resistive oxides have been found to be effective buffer layers. These include SnO_2, In_2O_3, and Zn_2SnO_4. Conductive oxides utilized in this work include SnO_2, ITO, CdIn_2O_4, and Cd_2SnO_4.
机译:薄膜CdTe太阳能电池通常具有最上层的配置,其中结在玻璃基板上制造,该玻璃基板上涂有透明导电氧化物,用作前触点。由于其光电特性以及化学和热稳定性,最常用的透明触点是SnO_2和ITO。通过溅射和化学气相沉积法制备了Cd,In,Zn和Sn的二元和三元透明氧化物,并对其结构和电光性质进行了研究。大多数溅射沉积的薄膜在室温下沉积,然后退火以改善其结构和电性能。对于透明氧化物的各种组合,包括双层结构的使用,已经研究了CdTe太阳能电池的性能,其中在导电氧化物的顶部沉积了电阻层或缓冲层。已经发现使用缓冲层可以改善太阳能电池的性能,特别是当CdS厚度相对较小时。已经发现几种电阻氧化物是有效的缓冲层。这些包括SnO_2,In_2O_3和Zn_2SnO_4。在这项工作中使用的导电氧化物包括SnO_2,ITO,CdIn_2O_4和Cd_2SnO_4。

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