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首页> 外文期刊>ACS Omega >A Novel Approach for the Development of Moisture Encapsulation Poly(vinyl alcohol-co-ethylene) for Perovskite Solar Cells
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A Novel Approach for the Development of Moisture Encapsulation Poly(vinyl alcohol-co-ethylene) for Perovskite Solar Cells

机译:钙钛矿型太阳能电池水分封装聚乙烯醇-乙烯共聚物的开发新方法

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In this study, we developed the universal encapsulation method using poly(vinyl alcohol-co-ethylene) (EVOH) to improve the water stability of perovskite solar cells. In order to enhance the moisture barrier property, we utilized SiO2 and graphene oxide (GO) fillers in the EVOH matrix. First, UV-treated SiO2 increased the dispersibility in the EVOH matrix and made the penetrating path more complicated, which led to a better moisture barrier property. The water vapor transmission ratio (WVTR) is enhanced from 4.72 × 10–2 (EVOH only) to 1.55 × 10–2 (EVOH with SiO2 filler) g/m2 day. Second, we found that GO reduce the unreacted hydroxyl groups that could attract water molecules at the surface of EVOH. The addition of GO increased the WVTR up to 3.34 × 10–3 g/m2 day. Finally, our EVOH-based film successfully encapsulated without the efficiency drop. The encapsulated devices surprisingly maintained 86% of their performance even under direct contact with water for 5 h.
机译:在这项研究中,我们开发了使用聚乙烯醇-乙烯-乙烯(EVOH)的通用封装方法,以改善钙钛矿太阳能电池的水稳定性。为了增强防潮性能,我们在EVOH基体中使用了SiO2和氧化石墨烯(GO)填料。首先,经紫外线处理的SiO2增加了在EVOH基体中的分散性,并使渗透路径更加复杂,从而获得了更好的防潮性能。每天的水蒸气透过率(WVTR)从4.72×10–2(仅EVOH)提高到1.55×10–2(EVOH和SiO2填料)g / m2。其次,我们发现GO还原了未反应的羟基,该羟基可能在EVOH表面吸引水分子。添加GO将WVTR提升至每天3.34×10–3 g / m2。最终,我们的基于EVOH的薄膜成功封装,而效率没有下降。即使在与水直接接触5小时的情况下,被封装的设备仍然惊人地保持了86%的性能。

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