Altering of the Electric and Magnetic Dipole Transition Probability of Eu3+ in YPO4 Lattice by Codoping of K+ Ion: Potential Materials for Imaging and Heating

被引:7
作者
Perala, Ramaswamy Sandeep [1 ,3 ]
Srivastava, Manas [2 ]
Singh, Bheeshma Pratap [2 ,5 ]
Putta, Venkata Nagendra Kumar [1 ]
Acharya, Raghunath [4 ]
Ningthoujam, Raghumani Singh [2 ,4 ]
机构
[1] Bhabha Atom Res Ctr, Chem Div, Mumbai 400085, India
[2] Bhabha Atom Res Ctr, Chem Div, Mumbai 400085, India
[3] Bhabha Atom Res Ctr, Radiochem Div, Mumbai 400085, India
[4] Homi Bhabha Natl Inst, Mumbai 400094, India
[5] GITAM Univ, Dept Phys, Visakhapatnam 530045, India
关键词
IRON-OXIDE NANOPARTICLES; LUMINESCENCE PROPERTIES; HYPERTHERMIA; NANORODS; HYBRID; PHOTOLUMINESCENCE; BIOCOMPATIBILITY; NANOPHOSPHOR; TEMPERATURE; BEHAVIOR;
D O I
10.1021/acs.iecr.2c01463
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Aqueous, dispersible, luminescent YPO4:Eu3+-K+ and hybrid magnetic-luminescent Fe3O4@YPO4:Eu3+-K+ nanoparticles are prepared at an optimum temperature with a simple synthesis route. The shape of YPO4:Eu3+-K+ nanoparticles is found to be nanorods. Photoluminescence spectrum of a sample upon excitation at 395 nm shows the characteristic peaks of Eu3+ such as magnetic-dipole transition (D-5(0)?->?F-7(1)) at 592 nm, the electric-dipole transition (D-5(0)?->?F-7(2)) at 615 nm, and electric-dipole transition (D-5(0)?->?F-7(4)) at 695 nm. Luminescence intensity increases with K+ doping. Interestingly, their luminescence intensities are almost the same. This could be explained by the polarizability effect of the PO43- group and K+ upon emission of Eu3+. This high intensity at 695 nm will be useful in bioimaging since this wavelength falls in biological window I. This hybrid material shows a hyperthermia temperature under an AC magnetic field, making this material a potential candidate for cancer therapy.
引用
收藏
页码:9755 / 9762
页数:8
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