Ultrafast laser-assisted perovskite-based optoelectronic devices

•Photon absorption and excitation of perovskite can be controlled by ultrafast laser.•Main mechanism of ultrafast laser processing perovskite is photochemical reaction.•Optoelectronic device of perovskite can be prepared and optimized by ultrafast laser. Perovskite materials have attracted widely in...

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Bibliographic Details
Published inOptics and laser technology Vol. 176; p. 110877
Main Authors Hu, Lifei, Zuo, Pei, Li, Fang, Tian, Hong, Huang, HeLang, Liu, TongFeng, Zhu, Di
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.09.2024
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Summary:•Photon absorption and excitation of perovskite can be controlled by ultrafast laser.•Main mechanism of ultrafast laser processing perovskite is photochemical reaction.•Optoelectronic device of perovskite can be prepared and optimized by ultrafast laser. Perovskite materials have attracted widely interest in the study of their physical mechanisms and applications due to variable special structures, a wide variety of organic-inorganic compounds, and excellent photoelectric properties such as high carrier mobility and high quantum luminescence efficiency. Ultrafast laser with the characteristics of ultrafast and ultrastrong has been another research hotspot in recent years. Ultrafast laser processing mainly relies on cold processing, and the perovskite devices prepared by this method have the characteristics of small heat affected zone, superior performance, and good stability. In this paper, the latest studies in the processing of perovskite materials by ultrafast laser are reviewed, divided into two parts: (i) the interaction of ultrafast laser with perovskite materials and the changes of perovskite physical properties irradiated by ultrafast laser; (ii) the ultrafast laser-assisted perovskite-based devices for luminescence, storing optical information, converting optical signals, optical imaging. Finally, the development, application and industrialization of perovskite materials in the field of optoelectronics are prospected.
ISSN:0030-3992
DOI:10.1016/j.optlastec.2024.110877