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Perovskite Solar Cells: Can We Go Organic-Free, Lead-Free, and Dopant-Free?

机译:钙钛矿太阳能电池:我们可以做到无有机,无铅和无掺杂吗?

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摘要

Having demonstrated incredibly fast progress in power conversion efficiency, rising to a level comparable with that of crystalline silicon cells, lead-based organic-inorganic hybrid perovskite solar cells are now facing the stability tests needed for industrialization. Poor thermal stability (<150 degrees C) owing to organic constituents and interlayer diffusion of materials (dopants), and environmental incompatibility due to Pb has surged the development of organic-free, Pb-free perovskites and dopant-free hole transport materials (HTMs). The recent rapid increase in efficiency of cells based on inorganic perovskites, crossing 18%, demonstrates the great potential of inorganic perovskites as thermally stable and high-efficiency cells. Although all kinds of Pb-free perovskites lag in efficiency in comparison to the hybrid and inorganic perovskites, they also demonstrate better structural and environmental stability. The performance of dopant-free HTMs matching/surpassing dopant-containing HTMs makes the former a better choice for stability. Even though the efforts to enhance the stability of Pb-based hybrid perovskites should continue by different techniques, organic-free and lead-free perovskites, and dopant-free HTMs must be pursued with greater interest for the future. This review describes the present issues and possible strategies to address them, and thus will help to improve the overall performance of robust organic-free, Pb-free, and dopant-free perovskite solar cells.
机译:铅基有机-无机杂化钙钛矿太阳能电池在功率转换效率方面取得了令人难以置信的快速进步,已达到与晶体硅电池相当的水平,现在正面临工业化所需的稳定性测试。由于有机成分和材料(掺杂剂)的层间扩散而导致的热稳定性差(<150摄氏度),以及由于铅引起的环境不相容性,推动了无有机,无铅钙钛矿和无掺杂空穴传输材料(HTM)的发展。 )。最近,基于无机钙钛矿的电池效率迅速提高,跨越了18%,这证明了无机钙钛矿作为热稳定和高效电池的巨大潜力。尽管与杂化钙钛矿和无机钙钛矿相比,各种无铅钙钛矿的效率都较低,但它们也显示出更好的结构和环境稳定性。无掺杂HTM的性能匹配/优于含掺杂HTM,这使前者成为稳定性的更好选择。尽管应通过不同的技术继续努力提高基于Pb的杂化钙钛矿的稳定性,但对有机无铅和无铅钙钛矿以及无掺杂HTM的追求仍应引起更大的兴趣。这篇综述描述了当前的问题以及解决这些问题的可能策略,因此将有助于改善坚固的无有机,无铅和无掺杂的钙钛矿太阳能电池的整体性能。

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