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Aerosol Assisted Solvent Treatment: A Universal Method for Performance and Stability Enhancements in Perovskite Solar Cells

机译:气溶胶辅助溶剂处理:钙钛矿太阳能电池的性能和稳定性增强方法

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摘要

Metal-halide perovskite solar cells (PSCs) have had a transformative impact on the renewable energy landscape since they were first demonstrated just over a decade ago. Outstanding improvements in performance have been demonstrated through structural, compositional, and morphological control of devices, with commercialization now being a reality. Here the authors present an aerosol assisted solvent treatment as a universal method to obtain performance and stability enhancements in PSCs, demonstrating their methodology as a convenient, scalable, and reproducible post-deposition treatment for PSCs. Their results identify improvements in crystallinity and grain size, accompanied by a narrowing in grain size distribution as the underlying physical changes that drive reductions of electronic and ionic defects. These changes lead to prolonged charge-carrier lifetimes and ultimately increased device efficiencies. The versatility of the process is demonstrated for PSCs with thick (1 mu m) active layers, large-areas (1 cm(2)) and a variety of device architectures and active layer compositions. This simple post-deposition process is widely transferable across the field of perovskites, thereby improving the future design principles of these materials to develop large-area, stable, and efficient PSCs.
机译:金属卤化物钙钛矿太阳能电池(PSC)对可再生能源景观具有变革​​性影响,因为它们首先在十年前展示。通过对设备的结构,组成和形态控制证明了性能的突出改进,现在商业化现在是现实。此处提出了一种气溶胶辅助溶剂处理作为PSC中获得性能和稳定性增强的通用方法,证明了它们作为PSC的方便,可扩展性和可重复的沉积后处理。它们的结果识别结晶度和晶粒尺寸的改善,伴随着粒度分布的缩小,因为减少了电子和离子缺陷的潜在物理变化。这些变化导致延长电荷载体寿命并最终增加了设备效率。对于具有厚(&1μm)有源层,大面积(& 1cm(2))和各种装置架构和有源层组合物的PSC,对该方法的多功能性证明了该过程的多功能性。这种简单的沉积过程广泛可转移到佩洛夫斯基斯领域,从而改善了这些材料的未来设计原则,以发展大面积,稳定和高效的PSC。

著录项

  • 来源
    《Advanced energy materials》 |2021年第33期|2101420.1-2101420.12|共2页
  • 作者单位

    Imperial Coll Dept Mat Mol Sci Res Hub London W12 0BZ England|Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England|Imperial Coll Dept Chem Mol Sci Res Hub London W12 0BZ England;

    Imperial Coll Dept Mat Mol Sci Res Hub London W12 0BZ England|Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England|Queen Mary Univ London Sch Engn & Mat Sci London E1 4NS England|Queen Mary Univ London Mat Res Inst London E1 4NS England;

    Univ Cambridge Dept Mat Sci & Met Cambridge CB3 0FS England;

    Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England|Imperial Coll Dept Chem Mol Sci Res Hub London W12 0BZ England;

    Imperial Coll Dept Mat Mol Sci Res Hub London W12 0BZ England|Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England;

    Queen Mary Univ London Sch Engn & Mat Sci London E1 4NS England|Queen Mary Univ London Mat Res Inst London E1 4NS England;

    Imperial Coll Dept Mat Mol Sci Res Hub London W12 0BZ England|Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England;

    Imperial Coll Dept Mat Mol Sci Res Hub London W12 0BZ England|Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England|Imperial Coll Dept Chem Mol Sci Res Hub London W12 0BZ England;

    Imperial Coll Dept Mat Mol Sci Res Hub London W12 0BZ England|Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England;

    Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England|Imperial Coll Dept Chem Mol Sci Res Hub London W12 0BZ England;

    Queen Mary Univ London Sch Engn & Mat Sci London E1 4NS England|Queen Mary Univ London Mat Res Inst London E1 4NS England;

    Univ Cambridge Dept Mat Sci & Met Cambridge CB3 0FS England;

    Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England|Imperial Coll Dept Chem Mol Sci Res Hub London W12 0BZ England;

    Queen Mary Univ London Sch Engn & Mat Sci London E1 4NS England|Queen Mary Univ London Mat Res Inst London E1 4NS England;

    Imperial Coll Dept Mat Mol Sci Res Hub London W12 0BZ England|Imperial Coll Ctr Processable Elect Mol Sci Res Hub London W12 0BZ England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    grain growth; large-area; MAPI; perovskite solar cells; post-deposition treatment;

    机译:籽粒生长;大面积;MAPI;钙钛矿太阳能电池;沉积后治疗;

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