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Ferromagnetism and Spin-Polarized Luminescence in Lead-Free CsEuCl 3 Perovskite Nanocrystals and Thin Films.

Kelly M WalshKimo PresslerMatthew J CraneDaniel R Gamelin
Published in: ACS nano (2022)
The emergence of next-generation spintronic and spin-photonic technologies will be aided by the development of materials showing strongly coupled magnetic, electronic, and optical properties. Through a combination of magneto-photoluminescence and magnetic circular dichroism spectroscopies we demonstrate strong magneto-optical responses from CsEuCl 3 perovskite nanocrystals and thin films in the near-UV/visible region, stemming from the f-d transitions centered at the B-site Eu 2+ cations. We show that this material undergoes a ferromagnetic phase transition at ∼3 K in both the nanocrystal and thin-film samples, resulting in complete spin alignment and indicating intrinsic ferromagnetism. We also report the observation of spin-polarized photoluminescence in the presence of a magnetic field at cryogenic temperatures, saturating with a large polarization ratio (Δ I / I = ( I L - I R )/( I L + I R )) of nearly 30% at modest magnetic fields (∼2 T). These results highlight CsEuCl 3 as an intrinsically ferromagnetic, luminescent metal-halide perovskite with potentially interesting implications for future spin-based technologies using perovskites.
Keyphrases
  • room temperature
  • ionic liquid
  • quantum dots
  • energy transfer
  • molecularly imprinted
  • high speed
  • sensitive detection
  • light emitting
  • mass spectrometry
  • solar cells
  • liquid chromatography
  • solid phase extraction