Highly Stable Perovskite Photodetector Based on Vapor-Processed Micrometer-Scale CsPbBr3 Microplatelets

  • Ying Li
  • , Zhifeng Shi*
  • , Lingzhi Lei
  • , Fei Zhang
  • , Zhuangzhuang Ma
  • , Di Wu
  • , Tingting Xu
  • , Yongtao Tian
  • , Yuantao Zhang
  • , Guotong Du
  • , Chongxin Shan
  • , Xinjian Li
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

114 Citations (Scopus)

Abstract

Recently, halide perovskites have attracted tremendous attention because of their great abilities in large-scale and cost-effective manufacturing of optoelectronic devices. Here, a novel photodetector configuration was proposed by employing vapor-processed micrometer-scale inorganic CsPbBr3 microplatelets as the light absorber. Temperature-dependent steady-state and time-resolved photoluminescence spectra were first recorded to study the emission mechanisms and carrier recombination dynamics of the CsPbBr3 microplatelets. Furthermore, a photoconductive detector was prepared, and the device exhibits good performances with a high on/off photocurrent ratio of 4.6 × 103, a responsivity of ∼.33 A/W, and a specific detectivity of 0.86 × 1012 jones. Additionally, temperature-dependent current-voltage and current-time characteristics of the photodetector were studied to assess the thermal effects on its photodetection ability. In particular, the unencapsulated photodetector demonstrates a prominent stability over the long-term temperature endurance measure in ambient air. Even operated at 373 K, the photodetector can operate properly, showing a high temperature resistance. Moreover, the device performance can almost be retained even with a 7 month storage in air. The experimental results suggest that the CsPbBr3 microplatelets can serve as a good candidate for the fabrication of high-performance photodetectors compatible with practical applications.

Original languageEnglish
Pages (from-to)6744-6755
Number of pages12
JournalChemistry of Materials
Volume30
Issue number19
DOIs
Publication statusPublished - 9 Oct 2018
Externally publishedYes

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