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Rare Earth Ion Doped Luminescent Materials: A Review of Up/Down Conversion Luminescent Mechanism, Synthesis, and Anti-Counterfeiting Application

Journal

PHOTONICS
Volume 10, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/photonics10091014

Keywords

rare earth; luminescence; anti-counterfeiting; structure

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With the rapid development of modern technology, optical anti-counterfeiting and encryption using rare earth ion doped materials have gained significant attention. This mini review provides an overview of the luminescent mechanisms, preparation methods, performance characteristics, and anti-counterfeiting applications of rare earth doped materials. Furthermore, it discusses the challenges in this field and potential solutions that are being developed.
With the rapid development of modern technology and information systems, optical anti-counterfeiting and encryption have recently attracted considerable attention. The demand for optical materials is also constantly increasing, with new requirements proposed for performance and application fields. Currently, rare earth ion doped materials possess a unique electronic layer structure, underfilled 4f5d electronic configuration, rich electronic energy level, and long-life excited state, which can produce a variety of radiation absorption and emission. The distinctive properties of rare earth are beneficial for using in diverse optical output anti-counterfeiting. Design is essential for rare earth ion doped materials with multiple responsiveness and multi-channel optical information anti-counterfeiting in the field of information security. Therefore, this mini review summarizes the luminescent mechanisms, preparation methods, performance characteristics and anti-counterfeiting application of rare earth doped materials. In addition, we discuss some critical challenges in this field, and potential solutions that have been or are being developed to overcome these challenges.

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