螯合树脂封装降低钙钛矿太阳能电池铅泄漏

IF 10.7 Q1 CHEMISTRY, PHYSICAL EcoMat Pub Date : 2023-08-04 DOI:10.1002/eom2.12400
Qingrui Wang, Zhenhua Lin, Yumeng Xu, Boyao Zhang, Xing Guo, Zhaosheng Hu, Yue Hao, Jingjing Chang
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引用次数: 0

摘要

尽管钙钛矿太阳能电池的效率已超过25%,但鉴于其商业前景,铅含量的毒性仍然是一个严重的问题。特别是当设备遭受恶劣天气时,铅含量很容易泄漏到土壤和水中。螯合树脂在处理工业废水方面表现出优异的优越性,因为螯合树脂中的官能团可以吸附二价金属离子来软化和净化废水。本文首次引入亚氨基二乙酸(IDA)-CR作为钙钛矿太阳能电池的封装。IDA-CR表现出高表面积和优异的吸附能力。对铅泄漏进行了定性和定量分析,在去离子水中浸泡12小时后,与未封装的对照装置相比,封装IDA‐CR的装置可滞留90%以上的铅 h即使在酸性条件下或加热后。这种IDA-CR方法为环境和生物友好的钙钛矿光电器件提供了一种新的策略
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Chelating resin encapsulation for reduced Pb leakage in perovskite solar cells

Although perovskite solar cells have achieved efficiency over 25%, the toxic of Pb content remains severe problem given its commercial prospect. Especially when the devices suffer harsh weather, the Pb content can easily leak out to soil and water. Chelating resins (CRs) exhibit excellent superiority in treating waste water in industrial field, since the functional groups in CRs can adsorb divalent metal ion to soften and purify waste water. Herein, an iminodiacetic acid (IDA)-CR is introduced as encapsulation over perovskite solar cells for the first time. The IDA-CR exhibits high surface area and excellent adsorption capability. Qualitative and quantitative analysis of Pb leakage are studied, and the devices with encapsulation of IDA-CR can detain over 90% of Pb compared with control devices without encapsulation after immersed in deionized water for 12 h even in acid situation or after heating. This IDA-CR method provides a new strategy towards environmental and biological-friendly perovskite optoelectronic devices.

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来源期刊
CiteScore
17.30
自引率
0.00%
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审稿时长
4 weeks
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Cover Image Issue Information PTAA-infiltrated thin-walled carbon nanotube electrode with hidden encapsulation for perovskite solar cells Halogen-free solvent processed organic solar sub-modules (≈55 cm2) with 14.70% efficiency by controlling the morphology of alkyl chain engineered polymer donor Minimizing voltage losses in Sn perovskite solar cells by Cs2SnI6 passivation
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