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Efficiency improvement of InGaP/GaAs/Ge solar cells by hydrothermal-deposited ZnO nanotube structure

机译:水热沉积ZnO纳米管结构提高InGaP / GaAs / Ge太阳能电池的效率

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摘要

In this paper, a zinc oxide (ZnO) nanotube, fabricated by the hydrothermal growth method on triple-junction (T-J) solar cell devices to enhance efficiency, is investigated. Compared to those of bare T-J solar cells (without antireflection (AR) coating) and solar cells with Si3N4 AR coatings, the experimental results show that the T-J solar cells, which use a ZnO nanotube as an AR coating, have the lowest reflectance in the short wavelength spectrum. The ZnO nanotube has the lowest light reflection among all experimental samples, especially in the range of 350 to 500 nm from ultraviolet (UV) to visible light. It was found that a ZnO nanotube can enhance the conversion efficiency by 4.9%, compared with a conventional T-J solar cell. The Si3N4 AR coatings also enhance the conversion efficiency by 3.2%.The results show that a cell with ZnO nanotube coating could greatly improve solar cell performances.
机译:本文研究了通过水热生长法在三结(T-J)太阳能电池器件上制造水氧化锌(ZnO)纳米管以提高效率的方法。与裸露的TJ太阳能电池(无抗反射(AR)涂层)和具有Si3N4 AR涂层的太阳能电池相比,实验结果表明,使用ZnO纳米管作为AR涂层的TJ太阳能电池具有最低的反射率。短波谱。 ZnO纳米管在所有实验样品中具有最低的光反射率,特别是在从紫外线(UV)到可见光的350至500 nm范围内。发现与传统的T-J太阳能电池相比,ZnO纳米管可以将转换效率提高4.9%。 Si3N4 AR涂层还提高了3.2%的转化效率,结果表明具有ZnO纳米管涂层的电池可以大大提高太阳能电池的性能。

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