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首页> 外文期刊>Nano Energy >A pure and stable intermediate phase is key to growing aligned and vertically monolithic perovskite crystals for efficient PIN planar perovskite solar cells with high processibility and stability
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A pure and stable intermediate phase is key to growing aligned and vertically monolithic perovskite crystals for efficient PIN planar perovskite solar cells with high processibility and stability

机译:纯且稳定的中间相是对高效销平面钙钛矿太阳能电池生长对齐和垂直整体钙钛矿晶体的关键,具有高的加工性和稳定性

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摘要

Solvent engineering has been extensively used to control the growth of a high-quality perovskite layer for solar cells by forming intermediate phases. However, the intermediate phase formation is often poorly understood and its effects on the perovskite layer growth are still elusive. Here, we have conducted a systematic and in-depth study on the above two issues through a strict control over the DMSO/DMF ratio in CH3NH3PbI3 perovskite solutions, and thus an effective control over the compositions of intermediate films. The films thus obtained, including perovskite, perovskite/MA(2)Pb(3)I(8)(DMSO)(2) and MA(2)Pb(3)I(8)(DMSO)(2), afford perovskite crystals via down-growth, down-and up-growth, and up-growth mechanisms, respectively. Significantly, the up-growth perovskite crystals from the pure MA(2)Pb(3)I(8)(DMSO)(2) exhibits the best interface contact with NiO substrate, optimal alignment without horizontal grain boundaries and a relatively large grain size, which facilitate charge transfer and reduce charge recombination in PSCs. As a result, the PIN planar PSCs based on NiO have achieved a PCE of 18.4%, a value which is among the highest for NiO-based PSCs, with the highest stability among the tested sample cells. Furthermore, the pure MA(2)Pb(3)I(8)(DMSO)(2) intermediate phase presents a high long-term stability, which enlarges the operating window for perovskite deposition and thus considerably improves the device processibility.
机译:通过形成中间阶段,溶剂工程被广泛用于控制太阳能电池的高质量钙钛矿层的生长。然而,中间相形成通常明白,并且其对钙钛矿层生长的影响仍然是难以捉摸的。在这里,我们通过严格对CH3NH3PBI3钙钛矿解决方案中的DMSO / DMF比进行严格控制,对上述两个问题进行了系统和深入的研究,从而有效地对中间膜组成的有效控制。由此获得的薄膜,包括钙钛矿,钙钛矿/ mA(2)Pb(3)I(8)(DMSO)(2)和Ma(2)Pb(3)I(8)(DMSO)(2),得到钙钛矿通过缩小生长,下降和上升和上升机制的晶体。显着地,来自纯MA(2)Pb(3)I(8)(8)(DMSO)(2)的上增长钙钛矿晶体表现出与NiO衬底的最佳界面接触,无需水平晶界和相对大的晶粒尺寸,促进了电荷转移并减少PSC中的电荷重组。结果,基于NIO的PIN平面PSC已经实现了18.4%的PCE,该值是基于NIO的PSC的最高值,具有最高的测试样品细胞之间的稳定性。此外,纯MA(2)Pb(3)I(8)(DMSO)(DMSO)(2)中间相具有高的长期稳定性,其扩大了钙钛矿沉积的操作窗口,从而显着提高了器件的加工性。

著录项

  • 来源
    《Nano Energy》 |2017年第2017期|共11页
  • 作者单位

    Hong Kong Univ Sci &

    Technol Dept Chem Kowloon Hong Kong Peoples R China;

    Hong Kong Univ Sci &

    Technol Dept Chem Kowloon Hong Kong Peoples R China;

    Hong Kong Univ Sci &

    Technol Dept Chem Kowloon Hong Kong Peoples R China;

    Hong Kong Univ Sci &

    Technol Dept Chem Kowloon Hong Kong Peoples R China;

    Hong Kong Univ Sci &

    Technol Dept Chem Kowloon Hong Kong Peoples R China;

    Hong Kong Univ Sci &

    Technol Dept Phys Kowloon Hong Kong Peoples R China;

    Hong Kong Univ Sci &

    Technol Dept Chem Kowloon Hong Kong Peoples R China;

    Hong Kong Univ Sci &

    Technol Dept Phys Kowloon Hong Kong Peoples R China;

    Beihang Univ Sch Mat Sci &

    Engn Beijing Peoples R China;

    Hong Kong Univ Sci &

    Technol Dept Chem Kowloon Hong Kong Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

    Perovskite; Intermediate phase; Inverted planar solar cell; Vertically monolithic crystal;

    机译:钙钛矿;中间阶段;倒置平面太阳能电池;垂直单片晶体;

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