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绿色苯甲醚作为具有不同铯浓度的平面三阳离子钙钛矿太阳能电池中的反溶剂

Green Anisole as Antisolvent in Planar Triple-Cation Perovskite Solar Cells with Varying Cesium Concentrations.

作者信息

La Ferrara Vera, De Maria Antonella, Rametta Gabriella

机构信息

Italian National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA), Portici Research Center, 80055 Portici, Italy.

出版信息

Micromachines (Basel). 2024 Jan 15;15(1):136. doi: 10.3390/mi15010136.

Abstract

The feasibility of replacing toxic chlorobenzene antisolvents with environmentally friendly anisole in the fabrication of planar triple-cation perovskite solar cells was explored here. The successful integration of anisole not only ensures comparable device performance but also contributes to the development of more sustainable and green fabrication processes for next-generation photovoltaic technologies. Nevertheless, to ensure the possibility of achieving well-functioning unencapsulated devices whose working operation depends on outdoor atmospheric conditions, we found that adjusting the cesium concentrations in the perovskite layers enabled the electrical characterization of efficient devices even under high relative humidity conditions (more than 40%). We found that 10% of CsI in the precursor solution will make devices with low hysteresis indexes and sustained performance stability over a 90-day period both with cholorobenzene and anisole antisolvent. These results further confirm that green anisole can replace chlorobenzene as an antisolvent.

摘要

本文探索了在平面三阳离子钙钛矿太阳能电池制造中用环境友好的苯甲醚替代有毒氯苯抗溶剂的可行性。苯甲醚的成功整合不仅确保了相当的器件性能,还为下一代光伏技术更可持续和绿色的制造工艺发展做出了贡献。然而,为确保实现依赖户外大气条件工作的未封装器件正常运行的可能性,我们发现调整钙钛矿层中的铯浓度能够使高效器件即使在高相对湿度条件下(超过40%)也能进行电学表征。我们发现前驱体溶液中10%的CsI会使器件具有低滞后指数,并在90天内使用氯苯和苯甲醚抗溶剂时都保持持续的性能稳定性。这些结果进一步证实绿色苯甲醚可以替代氯苯作为抗溶剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9d0/10820325/218f3b69dcc4/micromachines-15-00136-g001.jpg

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