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High performance carbon-based printed perovskite solar cells with humidity assisted thermal treatment

机译:具有湿度辅助热处理的高性能碳基印刷钙钛矿太阳能电池

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摘要

We report humidity assisted thermal exposure (HTE) as a post-treatment method for carbon based printed perovskite solar cells (CPSCs). The method does not only improve the interfaces of different layers of the printed stack, but also provides a pathway to fabricate high performance CPSCs with low hysteresis along with high stability. The HTE treatment directly influences over the associated components in the stack and remarkably improves each photovoltaic parameter of the CPSCs as seen by several characterization schemes presented in this study. The average initial efficiency (9.0% ± 0.2%) of the CPSCs of a batch was significantly improved to 13.1% ± 0.2% i.e. as high as 45% when subjected to HTE treatment for a period of 200 hours. Furthermore, the highest average efficiency obtained from the same batch from reverse scanning was 13.8% ± 0.4% with a CPSC attaining as high as 14.3% when exposed to the same thermo-humid environment for a period of 115 hours. Above all, the stability of the HTE treated CPSCs wasalso not compromised for over 350 hours under full-sun illumination stress testing at 40 °C. The results presented in this work provide an opportunity to adopt HTE treatment as a complementary step for the fabrication of high-performance carbon-based perovskite solar cells with low hysteresis accompanied by high durability and performance reproducibility.
机译:我们报告了湿度辅助热暴露(HTE)作为碳基印刷钙钛矿太阳能电池(CPSC)的后处理方法。该方法不仅改善了印刷堆叠的不同层的界面,而且提供了制造具有低滞后性和高稳定性的高性能CPSC的途径。如本研究中提出的几种表征方案所示,HTE处理直接影响电池堆中的相关组件,并显着改善CPSC的每个光伏参数。批处理的CPSC的平均初始效率(9.0%±0.2%)显着提高到13.1%±0.2%,即进行HTE处理200小时后,效率高达45%。此外,从同一批次通过反向扫描获得的最高平均效率为13.8%±0.4%,当在相同的湿热环境中暴露115小时后,CPSC高达14.3%。最重要的是,经过HTE处理的CPSC在40°C的全日照强度测试下,在超过350小时内的稳定性也没有受到损害。这项工作中提出的结果为采用HTE处理作为补充步骤提供了机会,以制造具有低滞后性并具有高耐用性和性能可重复性的高性能碳基钙钛矿太阳能电池。

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