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Gas-solid reaction based over one-micrometer thick stable perovskite films for efficient solar cells and modules

机译:基于一微米厚的稳定钙钛矿薄膜的气固反应用于高效太阳能电池和组件

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摘要

Besides high efficiency, the stability and reproducibility of perovskite solar cells (PSCs) are also key for their commercialization. Herein, we report a simple perovskite formation method to fabricate perovskite films with thickness over 1 μm in ambient condition on the basis of the fast gas−solid reaction of chlorine-incorporated hydrogen lead triiodide and methylamine gas. The resultant thick and smooth chlorine-incorporated perovskite films exhibit full coverage, improved crystallinity, low surface roughness and low thickness variation. The resultant PSCs achieve an average power conversion efficiency of 19.1 ± 0.4% with good reproducibility. Meanwhile, this method enables an active area efficiency of 15.3% for 5 cm × 5 cm solar modules. The un-encapsulated PSCs exhibit an excellent T80 lifetime exceeding 1600 h under continuous operation conditions in dry nitrogen environment.
机译:除了高效率,钙钛矿太阳能电池(PSC)的稳定性和可复制性也是其商业化的关键。本文中,我们报告了一种简单的钙钛矿形成方法,该方法可在掺有氯的三碘化氢铅和甲胺气体快速气固反应的基础上,在环境条件下制备厚度超过1μm的钙钛矿膜。所得的厚而光滑的掺氯的钙钛矿薄膜表现出完全的覆盖度,改善的结晶度,低的表面粗糙度和低的厚度变化。所得到的PSC的平均功率转换效率为19.1±0.4%,再现性良好。同时,此方法使5 cm×5 cm太阳能模块的有效面积效率达​​到15.3%。在干燥氮气环境下连续运行条件下,未封装的PSC的T80寿命极佳,超过1600 h。

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