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通过镱掺杂实现用于防伪的NaYF4:Tm,Yb微粒的可控结构和光学性质

Controllable structural and optical properties of NaYF4:Tm, Yb microparticles by Yb doping for anti-counterfeiting.

作者信息

Tuyen Vuong Thanh, Huy Bui Q V, Tong Nguyen Ba, Ngoc Lam Tran Thi, Ferrari Maurizio, My Dung Cao Thi, Dieu Thuy Ung Thi, Van Tran T T

机构信息

Faculty of Materials Science and Technology, University of Science, Vietnam National University Ho Chi Minh City Vietnam

Vietnam National University Ho Chi Minh City Vietnam.

出版信息

RSC Adv. 2023 Jun 26;13(28):19317-19324. doi: 10.1039/d3ra02841k. eCollection 2023 Jun 22.

Abstract

Hexagonal NaYF4:Tm, Yb upconversion (UC) phosphors with excellent UC luminescence quantum efficiency and chemical stability meet demands for applications in bioimaging and anti-counterfeiting printing. In this work, a series of NaYF4:Tm, Yb upconversion microparticles (UCMPs) with different concentrations of Yb were synthesized by a hydrothermal method. Then, the UCMPs become hydrophilic through surface oxidation of the oleic acid (C-18) ligand to azelaic acid (C-9) using the Lemieux-von Rodloff reagent. The structure and morphology of UCMPs were investigated by X-ray diffraction and scanning electron microscopy. The optical properties were studied using diffusion reflectance spectroscopy and photoluminescent spectroscopy under 980 nm laser irradiation. The emission peaks of the Tm ions are 450, 474, 650, 690, and 800 nm, attributed to the transitions from the excited state to ground state H. These emissions are the results of two or three photon absorption through multi-step resonance energy transfer from excited Yb, confirmed a power-dependent luminescence study. The results show that the crystal phases and luminescence properties of the NaYF4:Tm, Yb UCMPs are controlled by changing the Yb doping concentration. The printed patterns are readable under the excitation of a 980 nm LED. Moreover, the zeta potential analysis shows that the UCMPs after surface oxidation are water dispersible. In particular, the naked eye can observe the enormous upconversion emissions in UCMPs. These findings indicated that this fluorescent material is an ideal candidate for anti-counterfeiting and biological applications.

摘要

具有优异上转换(UC)发光量子效率和化学稳定性的六角形NaYF4:Tm,Yb上转换荧光粉满足了生物成像和防伪印刷应用的需求。在这项工作中,通过水热法合成了一系列不同Yb浓度的NaYF4:Tm,Yb上转换微粒(UCMPs)。然后,使用Lemieux-von Rodloff试剂通过油酸(C-18)配体表面氧化为壬二酸(C-9)使UCMPs变得亲水。通过X射线衍射和扫描电子显微镜研究了UCMPs的结构和形态。在980 nm激光照射下,使用漫反射光谱和光致发光光谱研究了光学性质。Tm离子的发射峰为450、474、650、690和800 nm,归因于从激发态到基态H的跃迁。这些发射是通过从激发的Yb进行多步共振能量转移的双光子或三光子吸收的结果,这通过功率相关的发光研究得到证实。结果表明,通过改变Yb掺杂浓度可以控制NaYF4:Tm,Yb UCMPs的晶相和发光性质。在980 nm LED激发下,印刷图案可读。此外,zeta电位分析表明,表面氧化后的UCMPs可水分散。特别是,肉眼可以观察到UCMPs中巨大的上转换发射。这些发现表明,这种荧光材料是防伪和生物应用的理想候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40f2/10291562/1d134bfc84e5/d3ra02841k-f1.jpg

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