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钙钛矿太阳能电池的器件内电极提取。

On-device lead sequestration for perovskite solar cells.

机构信息

Department of Chemistry and Biochemistry, Northern Illinois University, DeKalb, IL, USA.

Chemistry and Nanoscience Center, National Renewable Energy Laboratory, Golden, CO, USA.

出版信息

Nature. 2020 Feb;578(7796):555-558. doi: 10.1038/s41586-020-2001-x. Epub 2020 Feb 19.

Abstract

Perovskite solar cells, as an emerging high-efficiency and low-cost photovoltaic technology, face obstacles on their way towards commercialization. Substantial improvements have been made to device stability, but potential issues with lead toxicity and leaching from devices remain relatively unexplored. The potential for lead leakage could be perceived as an environmental and public health risk when using perovskite solar cells in building-integrated photovoltaics. Here we present a chemical approach for on-device sequestration of more than 96 per cent of lead leakage caused by severe device damage. A coating of lead-absorbing material is applied to the front and back sides of the device stack. On the glass side of the front transparent conducting electrode, we use a transparent lead-absorbing molecular film containing phosphonic acid groups that bind strongly to lead. On the back (metal) electrode side, we place a polymer film blended with lead-chelating agents between the metal electrode and a standard photovoltaic packing film. The lead-absorbing films on both sides swell to absorb the lead, rather than dissolve, when subjected to water soaking, thus retaining structural integrity for easy collection of lead after damage.

摘要

钙钛矿太阳能电池作为一种新兴的高效、低成本光伏技术,在商业化道路上面临着障碍。虽然器件稳定性方面已经取得了实质性的改进,但潜在的铅毒性和器件浸出问题仍未得到充分探索。在将钙钛矿太阳能电池应用于建筑集成光伏时,铅泄漏的可能性被认为是一种环境和公共健康风险。在这里,我们提出了一种在器件上进行化学固定的方法,可以固定超过 96%的由严重器件损坏引起的铅泄漏。在器件堆叠的前后两侧涂覆一层吸收铅的材料。在前透明导电电极的玻璃侧,我们使用一种含有膦酸基团的透明铅吸收分子膜,该基团与铅结合得非常牢固。在背面(金属)电极侧,我们在金属电极和标准光伏封装膜之间放置了一种掺有铅螯合剂的聚合物膜。当这些吸收铅的薄膜受到水浸泡时,会发生膨胀以吸收铅,而不是溶解,从而在损坏后保持结构完整性,便于收集铅。

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