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Mechanism of magnetic field-modulated luminescence from lanthanide ions in inorganic crystal: a review

  • Shan Ling Zuo
  • , Ping Chen*
  • , Cao Feng Pan*
  • *Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

Abstract

Abstract: The luminescence from lanthanide ions has potential applications in light emitting diodes, biomedical, solar cells, sensors, display, etc. However, the luminescence is suffered from the various problems, such as low luminescence efficiency and inharmonious wavelength for energy transfer. Magnetic field is an efficient method to modulate the wavelength and intensity of luminescence from lanthanide ions. Magnetic field redistributes the populated electrons in the excited states to tune the wavelength of lanthanide ions by Zeeman effect, mixing effect, and quantum confinement effect. Magnetic field enhances or suppresses the luminescence intensity by the administration of cross-relaxation, energy transfer, and Boltzmann population. In this review, we first introduce the various phenomena and mechanisms of magnetic field modulated downshift luminescence from lanthanide ions, including Zeeman effect, cross-relaxation, crystal structure, absorption, quantum confinement effect, and magnetic–optical hysteresis. Then, we explain the regulation of upconversion luminescence by magnetic field, containing energy transfer and mixing effect. Finally, different options regarding how to understand the mechanism of magnetic field-modulated luminescence from lanthanide ions in the future are outlined. Graphic abstract: [Figure not available: see fulltext.].

Original languageEnglish
Pages (from-to)1113-1126
Number of pages14
JournalRare Metals
Volume39
Issue number10
DOIs
StatePublished - 1 Oct 2020
Externally publishedYes

Keywords

  • Lanthanide ions
  • Luminescence
  • Magnetic field
  • Microscopic mechanism

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