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Excitation-Controlled Host–Guest Multicolor Luminescence in Lanthanide-Doped Calcium Zirconate for Information Encryption
by
Liu, Runfa
, Han, Yingdong
, Duan, Cunping
, Wang, Yangbo
, Li, Huaiyong
in
Crystal structure
/ information encryption
/ lanthanide
/ Lasers
/ luminescence
/ luminescence regulation
/ multicolor emission
/ Nanocrystals
/ Nanoparticles
/ Rare earth metals
2023
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Excitation-Controlled Host–Guest Multicolor Luminescence in Lanthanide-Doped Calcium Zirconate for Information Encryption
by
Liu, Runfa
, Han, Yingdong
, Duan, Cunping
, Wang, Yangbo
, Li, Huaiyong
in
Crystal structure
/ information encryption
/ lanthanide
/ Lasers
/ luminescence
/ luminescence regulation
/ multicolor emission
/ Nanocrystals
/ Nanoparticles
/ Rare earth metals
2023
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Do you wish to request the book?
Excitation-Controlled Host–Guest Multicolor Luminescence in Lanthanide-Doped Calcium Zirconate for Information Encryption
by
Liu, Runfa
, Han, Yingdong
, Duan, Cunping
, Wang, Yangbo
, Li, Huaiyong
in
Crystal structure
/ information encryption
/ lanthanide
/ Lasers
/ luminescence
/ luminescence regulation
/ multicolor emission
/ Nanocrystals
/ Nanoparticles
/ Rare earth metals
2023
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Excitation-Controlled Host–Guest Multicolor Luminescence in Lanthanide-Doped Calcium Zirconate for Information Encryption
Journal Article
Excitation-Controlled Host–Guest Multicolor Luminescence in Lanthanide-Doped Calcium Zirconate for Information Encryption
2023
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Overview
Efficient control over lanthanide luminescence by regulating excitations offers a real-time and reversible luminescence-managing strategy, which is of great importance and highly desirable for various applications, including multicolor display and information encryption. Herein, we studied the crystal structure, luminescence properties, and mechanisms of undoped and Tb3+/Eu3+-doped CaZrO3 in detail. The intrinsic purple-blue luminescence from host CaZrO3 and the introduced green/red luminescence from guest dopants Tb3+/Eu3+ were found to have different excitation mechanisms and, therefore, different excitation wavelength ranges. This enables the regulation of luminescent color through controlling the excitation wavelengths of Tb3+/Eu3+-doped CaZrO3. Furthermore, preliminary applications for information encryption with these materials were demonstrated using portable UV lamps of 254 and 302 nm. This study not only promotes the development of multicolor luminescence regulation in fixed-composition materials, but also advances the practical applications of lanthanide luminescent materials in visually readable, high-level anti-counterfeiting and information encryption.
Publisher
MDPI AG
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