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Intrinsic Thermal Instability of Methylammonium Lead Trihalide Perovskite

机译:甲基铵三卤化铅钙钛矿的固有热不稳定性

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Organolead halide perovskites currently are the new front-runners as light absorbers in hybrid solar cells, as they combine efficiencies passing already 20% with deposition temperatures below 100 °C and cheap solution-based fabrication routes. Long-term stability remains a major obstacle for application on an industrial scale. Here, it is demonstrated that significant decomposition effects already occur during annealing of a methylammonium lead triiode perovskite at 85 °C even in inert atmosphere thus violating international standards. The observed behavior supports the view of currently used perovskite materials as soft matter systems with low formation energies, thus representing a major bottleneck for their application, especially in countries with high average temperatures. This result can trigger a broader search for new perovskite families with improved thermal stability.
机译:有机油卤化物钙钛矿目前是混合太阳能电池中光吸收剂的新领跑者,因为它们结合了效率已经超过20%,沉积温度低于100°C和廉价的基于溶液的制造路线。长期稳定性仍然是工业规模应用的主要障碍。在此证明,即使在惰性气氛中,在甲基铵三碘化铅钙钛矿在85°C的退火过程中,已经发生了明显的分解作用,从而违反了国际标准。观察到的行为支持了当前使用的钙钛矿材料作为具有低地层能量的软物质系统的观点,因此代表了其应用的主要瓶颈,尤其是在平均温度较高的国家。该结果可以引发对具有更高热稳定性的新型钙钛矿系列的广泛搜索。

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