Interrelated Characterizations of 2D/3D Perovskite Solar Cells Aged Under Damp Heat Conditions

Cynthia Farha, E. Planès, L. Perrin, David Martineau, L. Flandin
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Abstract

Among alternative device structures, carbon-based perovskite solar cells look highly promising due to their inherent high stability. A one step perovskite solution with ammonium valeric acid iodide additive was pipetted to infiltrate the mesoporous layers through the carbon layer. To further investigate their stability, aging campaigns at 85°C/85%RH have been conducted during 1000 h. In this study, matured encapsulated system based on glass and a surlyn gasket was used, enabling the humidity permeation up to solar cells and inducing probably an accelerated degradation of devices. Thanks to dedicated characterization techniques, the local performances have been correlated to the degradation inhomogeneity.
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在湿热条件下老化的2D/3D钙钛矿太阳能电池的相关表征
在可选择的器件结构中,碳基钙钛矿太阳能电池由于其固有的高稳定性而具有很高的前景。用添加了碘化戊酸铵的一步法钙钛矿溶液通过碳层渗透到介孔层中。为了进一步研究其稳定性,在85°C/85%RH下进行了1000小时的老化运动。在本研究中,使用了基于玻璃和surlyn垫片的成熟封装系统,使湿度渗透到太阳能电池中,并可能导致设备加速退化。由于专门的表征技术,局部性能已经与退化不均匀性相关联。
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