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采用粉末工程技术,使用低纯度碘化铅低成本制备高效钙钛矿光伏器件。

Low-Cost Fabrication of Efficient Perovskite Photovoltaics Using Low-Purity Lead Iodide via Powder Engineering.

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan, Hubei 430070, P.R. China.

School of Materials Science and Engineering, Hefei University of Technology, Hefei 230009, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2023 May 3;15(17):20958-20965. doi: 10.1021/acsami.3c00358. Epub 2023 Apr 20.

Abstract

Low cost is the eternal theme for any commercial production. Numerous efforts have been explored to realize low-cost, high-efficiency perovskite solar cells (PSCs), such as replacing the traditional spin-coating method with an economical printing strategy, simplifying the device structure, reducing the number of functional layers, . However, there are few reports on the use of low-cost precursors. Herein, we enable the low-cost fabrication of efficient PSCs based on a very cheaper low-purity PbI via powder engineering. The low-purity PbI is blended with formamidinium iodide followed by dissolving in a 2-methoxyethanol solvent, and then, the high-quality FAPbI powders are formed via an inverse temperature crystallization process and solvent washing after several simple processes to reduce the impurities. As a result, the devices fabricated using the as-synthesized black powders based on the low-purity PbI exhibit a champion power conversion efficiency (PCE) of 23.9% and retained ∼95% of the initial PCE after ∼400 h of storage in the conditions of 25 ± 5 °C and 25 ± 5 RH% without encapsulation. In addition, the upscaling fabrication of a 5 cm × 5 cm solar minimodule also demonstrates an impressive efficiency of 19.5%. Our findings demonstrate an economic strategy for the commercialization of PSCs from the perspective of low-cost production.

摘要

低成本是任何商业生产的永恒主题。为了实现低成本、高效率的钙钛矿太阳能电池(PSCs),人们已经探索了许多方法,例如用经济的印刷策略替代传统的旋涂方法、简化器件结构、减少功能层的数量等。然而,很少有关于使用低成本前体的报道。在此,我们通过粉末工程,使基于非常低纯度 PbI 的高效 PSCs 能够实现低成本制造。将低纯度 PbI 与甲脒碘化混合,然后溶解在 2-甲氧基乙醇溶剂中,然后通过反温结晶过程和溶剂洗涤形成高质量的 FAPbI 粉末,从而在几个简单的过程后去除杂质。结果表明,使用基于低纯度 PbI 的合成黑色粉末制造的器件的冠军功率转换效率(PCE)为 23.9%,在 25 ± 5°C 和 25 ± 5 RH%的条件下储存约 400 小时后,初始 PCE 保留了约 95%,无需封装。此外,5cm×5cm 太阳能微模块的扩大制造也展示了令人印象深刻的 19.5%的效率。我们的研究结果从低成本生产的角度展示了 PSCs 商业化的经济策略。

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