首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Energy harvesting performance of bifacial and semitransparent amorphous silicon thin-film solar cells with front and rear transparent conducting oxide contacts
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Energy harvesting performance of bifacial and semitransparent amorphous silicon thin-film solar cells with front and rear transparent conducting oxide contacts

机译:具有前后透明导电氧化物接触的双层和半透明非晶硅薄膜太阳能电池的能量收集性能

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摘要

Bifacial and semitransparent hydrogenated amorphous silicon (a-Si:H) thin-film solar cells were prepared with front and rear transparent conducting oxide (TCO) contacts using a plasma-enhanced chemical vapor deposition process. Increased power conversion efficiencies (PCEs) and average visible transmissions (AVTs) in the visible wavelength range were realized in the cases of the bifacial and semitransparent solar cells based on the optimization of the device designs, such as front TCO contacts, intrinsic a-Si:H absorbers (i-a-Si:H), p-type hydrogenated nanocrystalline silicon carbide, and n-type hydrogenated nanocrystalline silicon layers. The dependencies of the performance parameters of the solar cells on the illumination direction and intensity were also investigated systematically. As the film thickness of the i-a-Si:H absorber layers increased from 150 nm to 450 nm, the PCEs of the solar cells respectively increased in the ranges of 6.01-7.50% and 5.25-6.25% when front and rear illuminations were used for a standard light intensity of 100 mW/cm2, while the AVTs decreased from 22.76% to 15.67% irrespective of illumination direction. The best PCEs of the bifacial and semitransparent solar cells that were fabricated with the use of optimal conditions were respectively equal to 7.94% and 6.20% when front and rear illumination conditions were used. The corresponding AVT was equal to 14.34%. The performance parameters of bifacial and semitransparent a-Si:H solar cells at varying illumination intensities in the range of 10-100 mW/cm(2) were also investigated, and yielded consistent PCE values in the range of 6.39-6.62% with front illumination, and 4.95-5.15% with rear illumination.
机译:使用等离子体增强的化学气相沉积工艺使用前后透明导电(TCO)触点,制备双层和半透明氢化非晶硅(A-Si:H)薄膜太阳能电池。在基于器件设计的优化的基础和半透明太阳能电池的情况下,实现了可见波长范围内的功率转换效率(PCE)和平均可见变速器(AVTS),例如前TCO触点,本征A-Si :H吸收剂(IA-Si:H),p型氢化纳米晶碳化硅,N型氢化纳米晶体硅层。还系统地研究了太阳能电池的性能参数对照明方向和强度的依赖性。随着IA-Si:H吸收层的膜厚度从150nm增加到450nm,太阳能电池的PCE分别在前后照明时增加了6.01-7.50%和5.25-6.25%的范围无论照明方向如何,AVT的标准光强度为100 mW / cm2,而AVTS从22.76%降低至15.67%。使用最佳条件制造的双层和半透明太阳能电池的最佳点分别等于前后照射条件的7.94%和6.20%。相应的AVT等于14.34%。在10-100mW / cm(2)的不同照明强度下的双相和半透明A-Si A-Si的性能参数也被研究,并在前面的6.39-6.62%的范围内得到一致的PCE值。照明,后照明4.95-5.15%。

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