Excitation efficiency determines the upconversion luminescence intensity of β-NaYF4:Er3+,Yb3+nanoparticles in magnetic fields up to 70 T

被引:22
作者
Borodziuk, Anna [1 ]
Baranowski, Michal [2 ,3 ,4 ]
Wojciechowski, Tomasz [1 ]
Minikayev, Roman [1 ]
Sikora, Bozena [1 ]
Maude, Duncan K. [2 ,3 ]
Plochocka, Paulina [2 ,3 ,4 ]
Klopotowski, Lukasz [1 ]
机构
[1] Polish Acad Sci, Inst Phys, Al Lotnikow 32-46, PL-02668 Warsaw, Poland
[2] CNRS UGA UPS INSA, UPR 3228, Lab Natl Champs Magnet Intenses, Grenoble, France
[3] CNRS UGA UPS INSA, UPR 3228, Lab Natl Champs Magnet Intenses, Toulouse, France
[4] Wroclaw Univ Sci & Technol, Fac Fundamental Problems Technol, Dept Expt Phys, Wroclaw, Poland
基金
英国工程与自然科学研究理事会;
关键词
ER3+YVO4 SINGLE-CRYSTAL; PHOTODYNAMIC THERAPY; NANOCRYSTALS; NANOPARTICLES; SPECTROSCOPY; MODULATION; MECHANISM; DYNAMICS;
D O I
10.1039/d0nr04252h
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Lanthanide-doped nanoparticles enable conversion of near-infrared photons to visible ones. This property is envisioned as a basis of a broad range of applications: from optoelectronics,viaenergy conversion, to bio-sensing and phototherapy. The spectrum of applications can be extended if magnetooptical properties of lanthanide dopants are well understood. However, at present, there are many conflicting reports on the influence of the magnetic field on the upconverted luminescence. In this work, we resolve this discrepancy by performing a comprehensive study of beta-NaYF4:Er3+,Yb(3+)nanoparticles. Crucially, we show that the magnetic field impacts the luminescence onlyviaa Zeeman-driven detuning between the excitation laser and the absorption transition. On the other hand, the energy transfer and multiphonon relaxation rates are unaffected. We propose a phenomenological model, which qualitatively reproduces the experimental results. The presented results are expected to lead to design of novel, dual-mode opto-magnetic upconverting nanomaterials.
引用
收藏
页码:20300 / 20307
页数:8
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