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Investigating the Effects of Chemical Gradients on Performance and Reliability within Perovskite Solar Cells with TOF-SIMS

机译:用TOF-SIMS调查化学梯度对钙钛矿太阳能电池内的性能和可靠性的影响

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Abstract Time‐of‐flight secondary‐ion mass spectrometry (TOF‐SIMS), a powerful analytical technique sensitive to all components of perovskite solar cell (PSC) materials, can differentiate between the various organic species within a PSC absorber or a complete device stack. The ability to probe chemical gradients through the depth of a device (both organic and inorganic), with down to 100 nm lateral resolution, can lead to unique insights into the relationships between chemistry in the absorber bulk, at grain boundaries, and at interfaces as well as how they relate to changes in performance and/or stability. In this review, the technique is described; then, from the literature, several examples of how TOF‐SIMS have been used to provide unique insight into PSC absorbers and devices are covered. Finally, the common artifacts that can be introduced if the data are improperly collected, as well as methods to mitigate these artifacts are discussed.
机译:摘要飞行时间二次离子质谱(TOF-SIMS),一种对钙钛矿太阳能电池(PSC)材料的所有组件敏感的强大分析技术,可以区分PSC吸收器或完整的设备堆栈内的各种有机物种之间。能够通过装置(有机和无机)的深度探测化学梯度,越来越低于100nm的横向分辨率,可以导致在吸收器散装中的化学物质之间的关系,在晶界和接口处具有独特的见解。以及它们如何与性能和/或稳定性的变化相关。在本次审查中,描述了该技术;然后,从文献中,覆盖了如何使用TOF-SIMS如何为PSC吸收器和设备提供独特的洞察的若干例子。最后,如果数据被收集不当地,可以介绍的常见伪像,以及讨论了减轻这些伪像的方法。

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