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Near-infrared Laser Triggered Full-Color Tuning Photon Upconversion and Intense White Emission in Single Gd2O3 Microparticle

DOI:10.1021/acssuschemeng.9b07464 期刊:ACS Sustainable Chemistry & Engineering 出版年份:2020 更新时间:2025-09-16 10:30:52
摘要: Full-color emission fluorescence materials are of imperious demands in information storage, graphics imaging and anti-counterfeiting fields. However, it is still a formidable challenge to develop a single material with full-color emission and high purity white output under a NIR-light excitation. Herein, we design a novel and convenient strategy to tune the upconversion luminescence color with full color range in lanthanide ions doped Gd2O3 microspheres via a single NIR laser sensitization. Different from the typical ion-dependent tuning of color, the bright and flexible full-color emission tuning from blue to cyan, green, yellow, pink, and red can be controllable implementation in a single microparticle. Particularity, benefiting from the laser sensitive color adjustment, highly intense white color emission can be simultaneously achieved in diverse doped ion concentration particles. In addition, the upconversion emission intensity has been evidently improved if using a NIR laser sensitization, leading to significantly enhanced upconversion red luminescence signal (44-fold) at the power 446 mW. The mechanistic investigations and dynamics analysis reveal that the unprecedented color tunability from these microcrystals is attributed to dynamic control of multi-energy transfer and multi-cross relaxation process. Furthermore, owning to their excellent upconversion luminescence properties, Gd2O3 microparticles could be used to the anticounterfeiting application in different colors. These findings not only open a way to fabricate a single material to fine tuning upconversion emission in a full color gamut, but also give the possibility to construction of the multicolor imaging for anti-counterfeiting applications.
作者: Wei Zheng,Baoyu Sun,Yuemei Li,Rui Wang,Tiyi Lei,Yanling Xu
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研究概述 实验方案

To develop a single material with full-color emission and high purity white output under a NIR-light excitation for applications in information storage, graphics imaging, and anti-counterfeiting fields.

The study successfully demonstrates tunable full-color emissions and bright white upconversion luminescence in a single Gd2O3:Yb3+/Tm3+/Er3+ microparticle via NIR laser stimulation. The dynamic control of multi-energy transfer and multi-cross relaxation processes enables color adjustment, offering potential applications in anti-counterfeiting technologies.

The study does not address the potential thermal effects of high laser treatment powers on the material's structural integrity over time. Additionally, the scalability of the synthesis method for industrial applications is not discussed.

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