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Dion-Jacobson halide perovskites for photovoltaic and photodetection applications

机译:Dion-jacobson卤化物Perovskites用于光伏和光电检修应用

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Hybrid halide perovskites have progressed as eminent semiconducting materials pioneering in the domain of low-cost thin film photovoltaics. Nevertheless, the intrinsic instability of the dominant three-dimensional (3D) perovskites impedes their potential applications in industrial-scale production and commercialization. Two-dimensional (2D) perovskite structures have surfaced as an achievable resolution to this contention. In 2D perovskites, large organic cations have been introduced as spacing cations to isolate the inorganic metal halide octahedra layers and correspondingly promote the formation of quantum well superlattices. The photophysical properties of 2D perovskites can be widely tailored through the manipulation of composition, structure, and dimensionality, which provides a compelling field for researchers working in the fields of both chemistry and physics to unveil 2D perovskite materials for high-performance devices. The advancement of low-dimensional Dion-Jacobson (DJ) phase perovskites has lately attracted considerable attention in view of their appealing stability against harsh environmental conditions as well as their competitive performance in optoelectronic applications. Although the initial reports on photovoltaic solar cells (PSCs) based on DJ perovskites have exhibited comparatively poor performance, recent investigations have revealed that they have the capability to realize a high power conversion efficiency above 20%. In this review, we discuss the structural and optoelectronic characteristics of DJ perovskites, followed by a comprehensive investigation on the recent development in DJ PSCs and photodetectors. The conceivable approaches that can be deployed to expedite the advancement of DJ-based optoelectronic applications are also discussed.
机译:杂化卤化物钙钛矿已成为低成本薄膜光伏领域的杰出半导体材料。然而,占主导地位的三维钙钛矿的固有不稳定性阻碍了其在工业规模生产和商业化方面的潜在应用。二维(2D)钙钛矿结构已成为解决这一争论的可行方案。在二维钙钛矿中,大的有机阳离子被引入作为间隔阳离子,以隔离无机金属卤化物八面体层,并相应地促进量子阱超晶格的形成。二维钙钛矿的光物理性质可以通过对组成、结构和维度的操纵进行广泛调整,这为化学和物理领域的研究人员提供了一个引人注目的领域,以揭示用于高性能器件的二维钙钛矿材料。鉴于低维Dion-Jacobson(DJ)相钙钛矿在恶劣环境条件下具有诱人的稳定性,以及在光电应用中的竞争性能,近年来其研究进展引起了广泛关注。虽然基于DJ钙钛矿的光伏太阳能电池(PSC)的最初报告显示出相对较差的性能,但最近的研究表明,它们能够实现20%以上的高功率转换效率。在这篇综述中,我们讨论了DJ钙钛矿的结构和光电特性,然后全面研究了DJ PSC和光电探测器的最新发展。本文还讨论了加速基于DJ的光电应用发展的可行方法。

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