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Recycling Perovskite Solar Cells To Avoid Lead Waste

机译:回收钙钛矿太阳能电池以避免铅浪费

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摘要

Methylammonium lead iodide (MAPbI3) perovskite based solar cells have recently emerged as a serious competitor for large scale and low-cost photovoltaic technologies. However, since these solar cells contain toxic lead, a sustainable procedure for handling the cells after their operational lifetime is required to prevent exposure of the environment to lead and to comply with international electronic waste disposal regulations. Herein, we report a procedure to remove every layer of the solar cells separately, which gives the possibility to selectively isolate the different materials. Besides isolating the toxic lead iodide in high yield, we show that the PbI, can be reused for the preparation of new solar cells with comparable performance and in this way avoid lead waste. Furthermore, we show that the most expensive part of the solar cell, the conductive glass (FTO), can be reused several times without any reduction in the performance of the devices. With our simple recycling procedure, we address both the risk of contamination and the waste disposal of perovskite based solar cells while further reducing the cost of the system. This brings perovskite solar cells one step closer to their introduction into commercial systems.
机译:基于钙钛矿的甲基铵碘化铅(MAPbI3)太阳能电池最近成为大规模和低成本光伏技术的重要竞争者。但是,由于这些太阳能电池包含有毒的铅,因此需要一种可持续的程序来处理其工作寿命后的电池,以防止铅暴露于环境中并符合国际电子废物处理法规。在此,我们报告了一种程序,分别去除太阳能电池的每一层,从而有可能选择性地隔离不同的材料。除了以高产率分离出有毒的碘化铅外,我们还证明了PbI可以重复用于制备性能相当的新型太阳能电池,从而避免了铅的浪费。此外,我们表明,太阳能电池最昂贵的部分,即导电玻璃(FTO),可以重复使用几次,而不会降低设备的性能。通过简单的回收程序,我们既解决了钙钛矿型太阳能电池污染的风险,又解决了废物处置问题,同时进一步降低了系统成本。这使钙钛矿太阳能电池更接近其引入商业系统的一步。

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