Ammonia-sensitive halide CsCu2I3 film for gas sensor and stimuli-responsive anti-counterfeiting

Guishun Li, Yu Zhang, Junming Xie, Yan Liu, Zihan Wu, Qing Chen, Pingping Sun, Guangning Hou, Chengbin Jing

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

Eco-friendly lead-free halide perovskites have emerged as promising materials for multiple applications due to their unique optoelectronic properties. In this work, we investigate the ammonia (NH3)-sensitive CsCu2I3 film for its potential in NH3 sensor and stimuli-responsive fluorescence anti-counterfeiting. CsCu2I3-based NH3 sensor demonstrates a high response to NH3 (△R/R0 = 1.07, at 100 ppm NH3) with rapid response/recovery time (21/19 s), as well as favorable gas selectivity. We proposed a potential NH3 sensing mechanism with the help of a series of semi-quantitative characterizations and excitation-dependent emission experiments. The electron-donating NH3 molecules can efficiently donate electrons to the p-type CsCu2I3 film, bringing about a decrease in film conductivity. Additionally, the adsorption of NH3 can also disorder the CsCu2I3 crystals with a high density of trap states, facilitating an energy transfer from self-trapped excitons (STEs) emission to defect-related emission, along with bright orange luminescence. Inspired by this phenomenon, we proposed a novel application of NH3-induced stimuli-responsive fluorescence for anti-counterfeiting. The results highlight the potential of CsCu2I3 for effective dual-function applications in gas sensors and gas-triggered anti-counterfeiting.

Original languageEnglish
Article number126794
JournalTalanta
Volume281
DOIs
StatePublished - 1 Jan 2025

Keywords

  • CsCuI
  • Defect-related emission
  • Lead-free halide
  • NH sensing
  • Stimuli-responsive anti-counterfeiting

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