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Recent progress in layered metal halide perovskites for solar cells, photodetectors, and field-effect transistors

机译:层状金属卤化物钙钛矿在太阳能电池、光电探测器和场效应晶体管中的应用研究进展

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摘要

Metal halide perovskite materials demonstrate immense potential for photovoltaic and electronic applications. In particular, two-dimensional (2D) layered metal halide perovskites have advantages over their 3D counterparts in optoelectronic applications due to their outstanding stability, structural flexibility with a tunable bandgap, and electronic confinement effect. This review article first analyzes the crystallography of different 2D perovskite phases [the Ruddlesden–Popper (RP) phase, the Dion–Jacobson (DJ) phase, and the alternating cations in the interlayer space (ACI) phase] at the molecular level and compares their common electronic properties, such as out-of-plane conductivity, crucial to vertical devices. This paper then critically reviews the recent development of optoelectronic devices, namely solar cells, photodetectors and field effect transistors, based on layered 2D perovskite materials and points out their limitations and potential compared to their 3D counterparts. It also identifies the important application-specific future research directions for different optoelectronic devices providing a comprehensive view guiding new research directions in this field.
机译:金属卤化物钙钛矿材料证明潜力巨大的光伏和电子应用程序。层状金属卤化物钙钛矿有优势在光电3 d同行应用程序由于其出色的稳定性,结构灵活可调隙,和电子约束效应。文章首先分析了晶体学的(不同的2 d钙钛矿阶段(DJ)阶段,交替的阳离子夹层空间(ACI)阶段)在分子水平,比较了他们共同的电子属性,如平面外导,垂直的关键设备。批判性的评论最近的发展光电设备,即太阳能电池,光电探测器和场效应晶体管,基于分层2 d和钙钛矿材料指出其局限性和潜力而3 d同行。识别重要的特定于应用程序的未来研究方向不同光电设备提供一个全面的观点指导新的研究方向字段。

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