Go beyond the limit: Rationally designed mixed-dimensional perovskite/semiconductor heterostructures and their applications

异质结 钙钛矿(结构) 半导体 材料科学 卤化物 纳米技术 光电子学 工程物理 物理 化学 无机化学 结晶学
作者
Weili Yu,Feng Li,Tao Huang,Wei Li,Tom Wu
出处
期刊:The Innovation [Elsevier]
卷期号:4 (1): 100363-100363 被引量:7
标识
DOI:10.1016/j.xinn.2022.100363
摘要

•Heterojunctions endow perovskites with diverse structures and desirable properties.•Heterojunctions bestow novel phenomena and exotic physical effects on perovskites.•Optoelectronic device performance can be greatly enhanced by heterojunctions. Halide perovskite heterojunctions rationally integrate the chemical and physical properties of multi-dimensional perovskites and judiciously chosen semiconductor materials, offering the promise of going beyond the limit of a single component. This emerging platform of materials innovation offers fresh opportunities to tune material properties, discover interesting phenomena, and enable novel applications. In this review, we first discuss the fundamentals of forming heterojunctions with perovskites and a wide range of semiconductors, and then give an overview of the research progress of halide perovskite heterojunctions in terms of their optical, electrical, and mechanical properties, focusing on how the heterojunction tunes the energy band structure, electrical transport, and charge recombination behaviors. We further outline the progress of perovskite-based heterojunctions in optoelectronics. Finally, the challenges and future research directions for perovskite/semiconductor heterojunctions are discussed. Halide perovskite heterojunctions rationally integrate the chemical and physical properties of multi-dimensional perovskites and judiciously chosen semiconductor materials, offering the promise of going beyond the limit of a single component. This emerging platform of materials innovation offers fresh opportunities to tune material properties, discover interesting phenomena, and enable novel applications. In this review, we first discuss the fundamentals of forming heterojunctions with perovskites and a wide range of semiconductors, and then give an overview of the research progress of halide perovskite heterojunctions in terms of their optical, electrical, and mechanical properties, focusing on how the heterojunction tunes the energy band structure, electrical transport, and charge recombination behaviors. We further outline the progress of perovskite-based heterojunctions in optoelectronics. Finally, the challenges and future research directions for perovskite/semiconductor heterojunctions are discussed.
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