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首页> 外文期刊>ACS combinatorial science >Combined Spatially Resolved Characterization of Antireflection and Antisoiling Coatings for PV Module Glass
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Combined Spatially Resolved Characterization of Antireflection and Antisoiling Coatings for PV Module Glass

机译:用于PV模块玻璃的抗反射和抗腐蚀涂层的空间分辨表征

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Characterization of photovoltaic (PV) module materials throughout different stages of service life is crucial to understanding and improving the durability of these materials. Currently the large-scale of PV modules (>1 m(2)) is imbalanced with the small-scale of most materials characterization tools (<= 1 cm(2)). Furthermore, understanding degradation mechanisms often requires a combination of multiple characterization techniques. Here, we present adaptations of three standard materials characterization techniques to enable mapping characterization over moderate sample areas (>= 25 cm(2)). Contact angle, ellipsometry, and UV-vis spectroscopy are each adapted and demonstrated on two representative samples: a commercial multifunctional coating for PV glass and an oxide combinatorial sample library. Best practices are discussed for adapting characterization techniques for large-area mapping and combining mapping information from multiple techniques.
机译:光伏(PV)模块材料的特征在于不同的使用寿命的不同阶段对理解和提高这些材料的耐久性至关重要。 目前,大规模的PV模块(> 1米(2))与大多数材料表征工具的小规模(<= 1cm(2))不相平。 此外,了解劣化机制通常需要多种特征技术的组合。 这里,我们提出了三种标准材料表征技术的调整,以实现通过中等样本区域(> = 25cm(2))的映射表征。 接触角,椭偏测量和UV-Vis光谱各自适用和证明了两个代表性样本:用于PV玻璃和氧化物组合样品文库的商业多功能涂层。 讨论了用于调整大面积映射的表征技术和组合来自多种技术的映射信息的最佳实践。

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