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Mixed cation 2D perovskite: a novel approach for enhanced perovskite solar cell stability

机译:混合阳离子2D钙钛矿:一种增强钙钛矿太阳能电池稳定性的新方法

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The integration of thin 2D perovskite layers at the 3D PVK/HTL interface is known to improve the power conversion efficiency and stability of perovskite solar cells (PSCs). In this work, we report a novel approach consisting of mixing two alkyl-based cations that form 2D perovskites (propylammonium iodide (PAI) and octyl ammonium iodide (OAI)) to form mixed cation 2D halide perovskite layers. The solar cells containing the mixed cations demonstrate enhanced device stability retaining 95% of performance after 1000 h under maximum power point tracking, far exceeding PSC samples with single OAI, 88% and PAI, 80% 2D layers. By cation mixing, the formation of a novel 2D perovskite crystal structure was confirmed by XRD and PL analysis and it was shown to have a uniform quasi-2D state (n = 2), a feature not found in single OAI and PAI samples. Notably, the novel morphology of the crystal structure leads to improved carrier dynamics and enhanced PSC stability.
机译:已知在3D PVK/HTL界面处的薄2D钙钛矿层的整合可以提高钙钛矿太阳能电池(PSC)的功率转换效率和稳定性。 在这项工作中,我们报告了一种新的方法,该方法包括混合两种基于烷基的阳离子,形成2D钙钛矿(碘化丙酰胺(PAI)和辛基碘化铵(OAI))形成混合阳离子2D卤化物钙钛矿层。 包含混合阳离子的太阳能电池表明,在最大功率跟踪下1000小时后,在1000小时后保持95%的设备稳定性,远远超过了单个OAI,88%和PAI,80%2D层的PSC样品。 通过阳离子混合,通过XRD和PL分析证实了新型2D钙钛矿晶体结构的形成,并被证明具有均匀的准2D状态(n = 2),这是单个OAI和PAI样品中未发现的特征。 值得注意的是,晶体结构的新形态会导致改善的载体动力学和增强的PSC稳定性。

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