4.7 Review

Recent Developments in Lanthanide-Doped Alkaline Earth Aluminate Phosphors with Enhanced and Long-Persistent Luminescence

Journal

NANOMATERIALS
Volume 11, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/nano11030723

Keywords

lanthanide doping; strontium aluminates; calcium aluminates; barium aluminates; synthesis; phosphors; long-persistent luminescence; phosphorescence

Funding

  1. Hanyang University

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Lanthanide-activated alkaline earth aluminate phosphors are excellent luminescent materials with a wide variety of phosphorescence colors, making them suitable for various applications. This review article discusses the synthesis methods, persistent luminescence mechanisms, and composition effects of these phosphors, with a focus on widely used alkaline earth aluminate phosphors.
Lanthanide-activated alkaline earth aluminate phosphors are excellent luminescent materials that are designed to overcome the limitations of conventional sulfide-based phosphors. The increasing research attention on these phosphors over the past decade has led to a drastic improvement in their phosphorescence efficiencies and resulted in a wide variety of phosphorescence colors, which can facilitate applications in various areas. This review article discusses the development of lanthanide-activated alkaline earth aluminate phosphors with a focus on the various synthesis methods, persistent luminescence mechanisms, activator and coactivator effects, and the effects of compositions. Particular attention has been devoted to alkaline earth aluminate phosphors that are extensively used, such as strontium-, calcium-, and barium-based aluminates. The role of lanthanide ions as activators and coactivators in phosphorescence emissions was also emphasized. Finally, we address recent techniques involving nanomaterial engineering that have also produced lanthanide-activated alkaline earth aluminate phosphors with long-persistent luminescence.

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