首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >SUES ON THE CHALCOPYRITE/DEFECT-CHALCOPYRITE JUNCTION MODEL FOR HIGH-EFFICIENCY CU(IN,GA)SE-2 SOLAR CELLS
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SUES ON THE CHALCOPYRITE/DEFECT-CHALCOPYRITE JUNCTION MODEL FOR HIGH-EFFICIENCY CU(IN,GA)SE-2 SOLAR CELLS

机译:高效Cu(IN,GA)SE-2太阳能电池的黄铜矿/缺陷-黄铜矿连接模型的研究

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Considering the chalcopyrite/defect-chalcopyrite junction model for Cu(In1-xGax)Se-2-based devices and our previously reported findings for the Cu(In1-xGax)(3)Se-5 defect chalcopyrites, we have postulated that uniform high-Ga-content photovoltaic structures (with x > 0.35) do not yield acceptable device performance due to the electrical and structural differences between both types of materials (chalcopyrite and defect-chalcopyrite). In this contribution, the structural properties of the surface region of Ga containing absorber materials have been studied by grazing incidence X-ray diffraction. We find that there are significant differences between surface and bulk. A structural model is proposed for the growth of the chalcopyrite/defect-chalcopyrite junction relative to its Ga content. And we demonstrate that closely lattice matched high-Ga-content structures (x > 0.35) can produce solar cells with acceptable performances. The high-voltage and low-current electrical outputs from high Ga structures are very desirable in module fabrication because overall resistive losses can be substantially reduced. [References: 9]
机译:考虑到基于Cu(In1-xGax)Se-2的器件的黄铜矿/缺陷-黄铜矿结模型以及我们先前报告的Cu(In1-xGax)(3)Se-5缺陷黄铜矿的发现,我们假定均匀高-Ga含量的光伏结构(x> 0.35)由于两种材料(黄铜矿和缺陷黄铜矿)之间的电气和结构差异而无法产生令人满意的器件性能。通过这种贡献,通过掠入射X射线衍射研究了含Ga吸收材料的表面区域的结构特性。我们发现表面和体积之间存在显着差异。提出了关于黄铜矿/缺陷-黄铜矿结的生长相对于其Ga含量的结构模型。并且我们证明紧密晶格匹配的高Ga含量结构(x> 0.35)可以生产出具有可接受性能的太阳能电池。高Ga结构的高电压和低电流电输出在模块制造中是非常理想的,因为可以大大降低总的电阻损耗。 [参考:9]

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