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Interconnection between Trait, Structure, and Composition of Grain Boundaries in Cu(ln,Ga)Se_2 Thin-Film Solar Cells

机译:Cu(LN,GA)SE_2薄膜太阳能电池CU(LN,GA)晶界的特征,结构和组成之间的互连

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摘要

Grain boundaries (GBs) are crucial for solar cells incorporating polycrystalline absorbers and particularly for those characterized by small grain sizes (approximate to 2 mu m). For example, random GBs in Si solar cells are found to have a detrimental effect on the cell performance being characterized by an increased recombination activity relative to grains. Yet, their role in Cu(In,Ga)Se-2 (CIGS) solar cells still remains controversial. The recent electron-beam-induced current (EBIC) study shows that 58% of the GBs in CIGS exhibit enhanced electrical properties considered to be benign (for the device performance). Yet, they coexist with 16% detrimental GBs (reduced electrical properties) and 27% neutral ones (no change in electrical property when compared with the bulk). In the present study, these different GBs are investigated by combining EBIC with electron backscattered diffraction and atom probe tomography techniques on identical GBs. For the first time, a successful correlation is shown (for any device) that interconnects the GB characteristics to its composition. Sufficient statistics demonstrate that the collective fluctuations of all elements at GBs determine its trait. In general, benign (detrimental) GBs are characterized by Cu depletion (enrichment) that favored the formation of donor (acceptor) defects.
机译:晶界(GBS)对于包含多晶吸收剂的太阳能电池是至关重要的,并且特别适用于具有小晶粒尺寸的那些(近似为2μm)。例如,发现Si太阳能电池中的随机GBS对细胞性能的不利影响,其特征在于相对于晶粒的重组活性增加。然而,它们在Cu(In,Ga)Se-2(CIGS)太阳能电池中的作用仍然存在争议。最近的电子束诱导的电流(EBIC)研究表明,CIGS中的58%的GBS表现出被认为是良性的增强电性能(用于器件性能)。然而,它们与16%有害的GBS(减少电性能)和27%中性(与批量相比,电性能没有变化)。在本研究中,通过在相同的GBS上与电子反向散射衍射和原子探测断层扫描技术相结合,研究了这些不同的GB。首次,显示成功的相关性(对于任何设备),将GB特性与其组成互连。足够的统计数据表明,GBS的所有元素的集体波动决定了其特质。通常,良性(有害的)GBS的特征在于Cu耗尽(富集),这些脱落(富集)有利于供体(受体)缺陷的形成。

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