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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Nanostructured encapsulation coverglasses with wide-angle broadband antireflection and self-cleaning properties for III-V multi-junction solar cell applications
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Nanostructured encapsulation coverglasses with wide-angle broadband antireflection and self-cleaning properties for III-V multi-junction solar cell applications

机译:具有III-V多结太阳能电池应用的具有广角宽带抗反射和自清洁特性的纳米结构封装盖玻片

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We report the effect of nanocone arrays (NCAs) as an antireflection coating (ARC) of encapsulation coverglasses on the device performance of encapsulated III-V InGaP/GaAs/Ge triple-junction (TJ) solar cells. The NCAs were fabricated on the single-side surface of glasses using the gold nanopatterns (i.e., nanoclusters) prepared by the glancing angle deposition technique without additional thermal treatment and the subsequent dry etching. Their wetting behavior and optical properties, together with a theoretical prediction using the rigorous coupled-wave analysis method, were investigated. The NCAs ARC coverglass exhibited a much lower water contact angle (θ_(CA)) of < 5° (i.e., superhydrophilic surface) and higher solar weighted transmittance (SWT) of ~95.9% over a wide wavelength region of 3001800 nm at normal incidence compared to the bare coverglass (i.e.,θ_(CA)~63° and SWT ~92.8%). The use of the NCAs ARC coverglass in encapsulated III-V InGaP/GaAs/Ge TJ solar cells led to the higher short circuit current density (J_(sc)) of 14.22 mA/cm~2 and thus improved the conversion efficiency (n) to 32.07% (cf., J_(sc)=13.84 mA/cm~2 and n=30.6% for the cell with the bare coverglass). For incident angle-dependent solar cell characteristics, it also showed a superior solar power conversion property in wide incident light angles of 20-80°.
机译:我们报告纳米锥阵列(NCA)作为封装盖玻片的抗反射涂层(ARC)对封装的III-V InGaP / GaAs / Ge三结(TJ)太阳能电池的器件性能的影响。使用通过掠角沉积技术制备的金纳米图案(即纳米团簇),无需额外的热处理和随后的干法刻蚀,即可在玻璃的单面表面上制造NCA。研究了它们的润湿行为和光学性质,并使用严格的耦合波分析方法对理论进行了预测。 NCAS ARC防护玻璃在垂直入射时在3001800 nm的宽波长区域内具有小于5°(即超亲水表面)的更低的水接触角(θ_(CA))和〜95.9%的更高的太阳加权透射率(SWT)。与裸露的盖玻片相比(θ_(CA)〜63°和SWT〜92.8%)。在封装的III-V InGaP / GaAs / Ge TJ太阳能电池中使用NCAs ARC盖玻片可提高14.22 mA / cm〜2的短路电流密度(J_(sc)),从而提高了转换效率(n)到32.07%(参见J_(sc)= 13.84 mA / cm〜2,对于带有裸盖玻片的电池,n = 30.6%)。对于依赖于入射角的太阳能电池特性,它在20-80°的宽入射光角下也显示出优异的太阳能转换性能。

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