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Improvement of the physical properties of ZnO/CdTe core-shell nanowire arrays by CdCl2 heat treatment for solar cells

机译:CdCl2热处理改善太阳能电池ZnO / CdTe核壳纳米线阵列的物理性能

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摘要

Abstract CdTe is an important compound semiconductor for solar cells, and its use in nanowire-based heterostructures may become a critical requirement, owing to the potential scarcity of tellurium. The effects of the CdCl2 heat treatment are investigated on the physical properties of vertically aligned ZnO/CdTe core-shell nanowire arrays grown by combining chemical bath deposition with close space sublimation. It is found that recrystallization phenomena are induced by the CdCl2 heat treatment in the CdTe shell composed of nanograins: its crystallinity is improved while grain growth and texture randomization occur. The presence of a tellurium crystalline phase that may decorate grain boundaries is also revealed. The CdCl2 heat treatment further favors the chlorine doping of the CdTe shell with the formation of chlorine A-centers and can result in the passivation of grain boundaries. The absorption properties of ZnO/CdTe core-shell nanowire arrays are highly efficient, and more than 80% of the incident light can be absorbed in the spectral range of the solar irradiance. The resulting photovoltaic properties of solar cells made from ZnO/CdTe core-shell nanowire arrays covered with CuSCN/Au back-side contact are also improved after the CdCl2 heat treatment. However, recombination and trap phenomena are expected to operate, and the collection of the holes that are mainly photo-generated in the CdTe shell from the CuSCN/Au back-side contact is presumably identified as the main critical point in these solar cells.
机译:摘要CdTe是重要的太阳能电池化合物半导体,由于碲的潜在稀缺性,其在纳米线异质结构中的使用可能成为一个关键要求。研究了CdCl2热处理对通过化学浴沉积与近距离空间升华相结合而生长的垂直排列的ZnO / CdTe核壳纳米线阵列的物理性能的影响。研究发现,由CdCl2热处理在由纳米晶粒组成的CdTe壳层中会引起重结晶现象:其结晶度得到改善,同时晶粒生长和织构随机化发生。还揭示了可能装饰晶界的碲结晶相的存在。 CdCl2热处理进一步有利于CdTe壳的氯掺杂,并形成氯A中心,并可能导致晶界钝化。 ZnO / CdTe核-壳纳米线阵列的吸收性能非常高效,并且在太阳辐照度的光谱范围内可以吸收80%以上的入射光。在CdCl2热处理后,由ZnO / CdTe核壳纳米线阵列覆盖CuSCN / Au背面触点制成的太阳能电池的光伏性能也得到了改善。然而,预期会发生复合和陷阱现象,并且推测从这些CuSCN / Au背面接触在CdTe壳中主要是光生的空穴的收集被确定为这些太阳能电池的主要临界点。

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