放气
材料科学
钙钛矿(结构)
通量
质子
辐射
辐照
三卤化物
光电子学
化学工程
纳米技术
部分
密闭空间
载流子寿命
辐射损伤
空间环境
阳极
聚乙烯
钙钛矿太阳能电池
辐射耐受性
作者
Lorenzo Torresani,Andreas Pahler,Alexander Frebel,Yanning Ding,Sofya Svetlosanova,Chittaranjan Das,Stephanie Essig,Claudiu Mortan,Michael Saliba
标识
DOI:10.1021/acsenergylett.6c00885
摘要
Abstract Perovskite solar cells (PSCs) have emerged as promising candidates for space photovoltaics, due to their high power-per-weight ratio. However, the space environment imposes harsh requirements, such as radiation tolerance. Especially, proton radiation induces defects in solids, reducing the lifetime of devices. While encapsulation can reduce damage, cover glasses are incompatible with the desirable development of flexible solar cells. Here, a thin-film encapsulation of ALD-AlOx is tested as an outgassing barrier against different space-relevant proton energies, i.e., 0.05, 1, and 3 MeV, with a fixed fluence of 5 × 1012 p+/cm2. While simulations confirm that even low-energy protons can easily overcome the barrier, the encapsulant works by preventing the outgassing of organic components displaced or thermally volatilized by protons. Thus, a detrimental increment of the PbI2 moiety within the perovskite absorber is prevented. The retained performance was improved from as low as 71% (unprotected devices) to as high as 99% (encapsulated).
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