4.8 Article

A-Site Substitute for Fabricating All-Inorganic Perovskite CsPbCl3 with Application in Self-Powered Ultraviolet Photodetectors

Journal

JOURNAL OF PHYSICAL CHEMISTRY LETTERS
Volume 13, Issue 1, Pages 267-273

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpclett.1c03891

Keywords

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Funding

  1. National Natural Science Foundation of China [51972101, 11874143]
  2. Natural Science Foundation of Hubei Province [2019CFB508]

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In this study, a high-quality CsPbCl3 microcrystalline film was successfully fabricated by introducing an A-site substitute route. The device performance was enhanced through a pressure-assisted annealing strategy. The optimized PDs showed excellent device performances and good stability, laying a foundation for the application of all inorganic perovskite materials in the field of ultraviolet photodetectors.
Because of its stable chemical properties and wide band gap, CsPbCl3 perovskite has shown great application prospects in ultraviolet photodetectors (UPDs). However, the poor solubility of CsCl in organic solvents impedes the fabrication of high-quality CsPbCl3 films. Herein, we introduced an A-site substitute route for fabricating a high-quality CsPbCl3 microcrystalline (MC) film by spin-coating cesium acetate on a MAPbCl(3) MC film followed by a high-temperature annealing process. To enhance the device performance of the FTO/SnO2/CsPbCl3 MCs/carbon structure UPD, a pressure-assisted annealing strategy was carried out, which reduced the void density and surface roughness of the microcrystal film. Finally, our optimized PDs showed high device performances with an on/off ratio of 6 x 10(4), a responsivity of 0.13 A W-1, a detectivity of as high as 1.07 x 10(12) Jones, and a rise/fall time of 10/24 mu s. Moreover, our unpacked PDs showed good storage and light stability. Our results lay a foundation for the application of all inorganic perovskite in the ultraviolet region.

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