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article · Physica B Condensed Matter

The effect of guanidinium tetrafluoroborate surface passivation on the stability of 2D-PEA2SnI4 perovskite thin films prepared by sequential physical vapor deposition

20243 citationsOpen accessUniversity of Nairobi

Abstract

2D-PEA 2 SnI 4 perovskites thin films were prepared by sequential physical vapor deposition (SPVD), and passivated in vacuum using guanidinium tetrafluoroborate (GuaBF 4 ). The effect of GuaBF 4 on stability, optical, morphological, electrical, and structural properties of PEA 2 SnI 4 films was investigated. The introduction of GuaBF 4 improved the film morphology and crystallinity with the resulting films exhibiting enlarged grain sizes and low surface roughness. Raman and FTIR results showed that GuaBF 4 did not change the structural phase and the functional group of the perovskite, but rather confirmed an additive-perovskite interaction. PL and carrier lifetime measurements revealed a 1.8 and 2-folds increment in intensity and lifetime respectively, attributed to suppression of non-radiative recombination in GuaBF 4 treated films. XRD, UV–Vis and FE-SEM stability studies showed that GuaBF 4 treatment significantly improved the stability of the films. This study suggests an effective strategy for deposition of solvent-free additive based 2D-Sn perovskite high quality films that are stable and reproducible.

Research topics

  • Perovskite Materials and Applications
  • Chalcogenide Semiconductor Thin Films
  • Optical properties and cooling technologies in crystalline materials

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DOI: 10.1016/j.physb.2024.416735

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