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首页> 外文期刊>Journal of nanoscience and nanotechnology >Development of a Solar Cell Back Sheet with Excellent UV Durability and Thermal Conductivity
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Development of a Solar Cell Back Sheet with Excellent UV Durability and Thermal Conductivity

机译:具有优异的UV耐久性和导热性的太阳能电池背板的研制

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摘要

The back sheet is one of the most important materials in photovoltaic (PV) modules. It plays an important role in protecting the solar cell from the environment by preventing moisture penetration. In the back sheet, the outermost layer is composed of a polyester (PET) film to protect the PV module from moisture, and the opposite layer is composed of a TiO2 + PE material. Nowadays, PV modules are installed in the desert. Therefore, methods to improve the power generation efficiency of PV modules need to be investigated as the efficiency is affected by temperature resulting from the heat radiation effect. Using a back sheet with a high thermal conductivity, the module output efficiency can be increased as heat is efficiently dissipated. In this study, a thermally conductive film was fabricated by mixing a reference film (TiO2 + PE) and a non-metallic material, MgO, with high thermal conductivity. UV irradiation tests of the film were conducted. The thermally conductive film (TiO2 + PE + MgO) showed higher conductivity than a reference film. No visible cracks and low yellowing degree were found in thermally conductive film, confirming its excellent UV durability characteristics. The sample film was bonded to a PET layer, and a back sheet was fabricated. The yellowing of the back sheet was also analyzed after UV irradiation. In addition, mini modules with four solar cell were fabricated using the developed back sheet, and a comparative outdoor test was conducted. The results showed that power generation improved by 1.38%.
机译:背板是光伏(PV)模块中最重要的材料之一。它在通过防止水分渗透来保护太阳能电池免受环境来发挥重要作用。在后板中,最外层由聚酯(PET)膜组成以保护PV模块免受水分,并且相对层由TiO 2 + PE材料构成。如今,PV模块安装在沙漠中。因此,需要研究提高PV模块的发电效率的方法,因为效率受到热辐射效应产生的温度的影响。使用具有高导热率的后纸,模块输出效率可以随着热量耗散而增加。在该研究中,通过将参考膜(TiO2 + PE)和非金属材料,MgO混合具有高导热率的导热膜。进行膜的紫外线辐射试验。导热膜(TiO2 + PE + MgO)显示比参考膜更高的导电性。在导热膜上没有发现可见裂缝和低黄色度,确认其优异的UV耐久性特性。将样品膜与PET层键合,并制造后纸。紫外线照射后,还分析了后纸的泛黄。此外,使用开发的背板制造具有四个太阳能电池的迷你模块,并进行比较室外测试。结果表明,发电提高了1.38%。

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