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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Colloidal quantum dots and metal halide perovskite hybridization for solar cell stability and performance enhancement
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Colloidal quantum dots and metal halide perovskite hybridization for solar cell stability and performance enhancement

机译:胶体量子点和金属卤化物钙钛矿杂交用于太阳能电池稳定性和性能增强

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摘要

Metal halide perovskites and colloidal quantum dots (QDs) are two emerging classes of photoactive materials that have attracted considerable attention for next-generation high-performance solution-processed solar cells. In particular, the hybridization of these two types of materials has recently demonstrated remarkable performance enhancement due to the complementary nature of the two constituents. In this review, we will highlight the recent progress of QDs and perovskite hybridization in solar cell applications. More specifically, the unique properties of monophase perovskite QDs will be summarised, and are demonstrated by homogeneously hybridizing perovskite QDs into the perovskite lattice. We also discuss the recent progress in heterogeneously hybridizing discrete colloidal QDs into perovskite layers which results in significant enhancement in perovskite film stability as well as corresponding solar cell performance improvement. PbS QDs, other chalcogenide QDs, and emerging two-dimensional QDs are further accounted through multiple methods, such as constructing bilayer architectures and core-shell structures or blending multiple QDs into perovskite layers. In the end, an outlook perspective of this field has been proposed to point out several challenges and possible solutions.
机译:金属卤化物钙钛矿和胶体量子点是两类新兴的光活性材料,在下一代高性能溶液处理太阳能电池中引起了广泛关注。特别是,由于这两种成分的互补性,这两种材料的杂交最近表现出显著的性能增强。在这篇综述中,我们将重点介绍量子点和钙钛矿杂化在太阳能电池应用中的最新进展。更具体地说,将总结单相钙钛矿量子点的独特性质,并通过将钙钛矿量子点均匀杂化到钙钛矿晶格中来证明。我们还讨论了将离散胶体量子点非均匀杂化到钙钛矿层中的最新进展,这将显著提高钙钛矿薄膜的稳定性,并相应提高太阳能电池的性能。PbS量子点、其他硫系量子点和新兴的二维量子点通过多种方法进一步说明,例如构建双层结构和核壳结构,或将多个量子点混合到钙钛矿层中。最后,提出了该领域的展望,指出了该领域面临的挑战和可能的解决方案。

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