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Effective strategy for stabilized perovskite solar cells using tandem architecture

机译:使用串联架构的稳定钙钛矿太阳能电池的有效策略

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Organometal trihalide perovskite material is an exciting class of photovoltaic material with good performance and simple fabrication process that can be adopted by low-cost manufacturable technologies. Unfortunately, such technology is haunted by stability issues for long term applications. To address this issue, recent studies generally trade performance for stability by applying a filter to eliminate UV and blue illumination. Herein, we report our success in using a-Si/perovskite architecture, in which the a-Si is not only part of the device, but also an effective UV-blue light filter to keep perovskite from the UV damage. The tandem device maintains higher performance, particularly during the long term tests. Specifically, Voc of the tandem device achieved a high value of 93% the sum of the component-cells under AM 1.5 illumination. The stability of perovskite solar cells is significantly enhanced comparing with bare perovskite devices. Our results indicate a novel feasible route to elevate the stability of perovskite solar cell without compromising its performance.
机译:有机金属三卤化物钙钛矿材料是一类令人兴奋的光电材料,具有良好的性能和简单的制造工艺,可被低成本的可制造技术采用。不幸的是,对于长期应用而言,这种技术一直困扰着稳定性问题。为了解决这个问题,最近的研究通常通过应用滤光片消除紫外线和蓝色照明来以稳定性为代价。在此,我们报告了我们在使用a-Si /钙钛矿体系结构方面的成功经验,其中a-Si不仅是设备的一部分,而且还是一种有效的紫外线蓝光滤光片,可防止钙钛矿受到紫外线的损害。串联设备可保持更高的性能,尤其是在长期测试期间。具体地说,串联装置的Voc在AM 1.5照明下达到了组成单元总和的93%的高值。与裸露的钙钛矿设备相比,钙钛矿太阳能电池的稳定性得到了显着提高。我们的结果表明,在不影响钙钛矿型太阳能电池性能的前提下,增加钙钛矿型太阳能电池稳定性的一条可行的新途径。

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