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Observation of Nanoscale Morphological and Structural Degradation in Perovskite Solar Cells by in Situ TEM

机译:原位透射电镜观察钙钛矿太阳能电池的纳米形貌和结构降解

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High-resolution in situ transmission electron microscopy (TEM) and electron energy loss spectroscopy were applied to systematically investigate morphological and structural degradation behaviors in perovskite films during different environmental exposure treatments. In situ TEM experiment indicates that vacuum itself is not likely to cause degradation in perovskites. In addition, these materials were found to degrade significantly when they were heated to similar to 50-60 degrees C (i.e., a solar cell's field operating temperature) under illumination. This observation thus conveys a critically important message that the instability of perovskite solar cells at such a low temperature may limit their real field commercial applications. It was further unveiled that oxygen most likely attacks the CH3NH3+ organic moiety rather than the PbI6 component of perovskites during ambient air exposure at room temperature. This finding grants a deeper understanding of the perovskite degradation mechanism and suggests a way to prevent degradation of perovskites by tailoring the organic moiety component.
机译:高分辨率原位透射电子显微镜(TEM)和电子能量损失谱用于系统研究钙钛矿膜在不同环境暴露处理下的形态和结构降解行为。原位TEM实验表明真空本身不太可能引起钙钛矿的降解。另外,发现这些材料在照明下被加热到类似于50-60摄氏度(即,太阳能电池的现场工作温度)时会显着降解。因此,该观察结果传达了至关重要的信息,即钙钛矿太阳能电池在如此低的温度下的不稳定性可能会限制其实际的商业应用。进一步揭示,在室温下暴露于空气中,氧气最有可能攻击CH3NH3 +有机部分而不是钙钛矿的PbI6组分。这一发现使人们对钙钛矿的降解机理有了更深入的了解,并提出了一种通过调整有机部分组分来防止钙钛矿降解的方法。

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