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Photostability of plasma polymerized γ-terpinene thin films for encapsulation of OPV

机译:等离子体聚合的γ-萜品烯薄膜对OPV封装的光稳定性

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摘要

Optically transparent, smooth, defect-free, chemically inert and with good adhesion to a variety of substrates, plasma polymers from plant-derived secondary metabolites have been identified as promising encapsulating materials for organic electronics and photovoltaics. Here, we demonstrate that an encapsulating layer of plasma polymerized γ-terpinene reduces degradation-related loss in conversion efficiency in PCPDTBT:PC70BM solar cells under ambient operating conditions. The stability of γ-terpinene films was then investigated under extreme UV irradiation conditions as a function of deposition power. When exposed to ambient air, prolonged exposure to UV–A and UV–B light led to notable ageing of the polymer. Photooxidation was identified as the main mechanism of degradation, confirmed by significantly slower ageing when oxygen was restricted through the use of a quartz cover. Under unnatural high-energy UV–C irradiation, significant photochemical degradation and oxidation occurred even in an oxygen-poor environment.
机译:光学透明,光滑,无缺陷,化学惰性且对多种基材具有良好的粘附性,来自植物的次级代谢产物的等离子聚合物已被确认为有机电子和光伏技术的有前途的封装材料。在这里,我们证明了在环境工作条件下,等离子体聚合的γ-萜品烯的封装层可降低PCPDTBT:PC70BM太阳能电池中转化率的降解相关损失。然后研究了在极端紫外线照射条件下γ-萜品烯薄膜的稳定性与沉积能力的关系。当暴露于环境空气中时,长时间暴露于UV-A和UV-B光线会导致聚合物明显老化。光氧化被认为是降解的主要机理,这一点可以通过使用石英覆盖层限制氧气的老化来明显地证实。在非自然的高能UV-C辐射下,即使在氧气不足的环境中,也会发生显着的光化学降解和氧化。

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