Photoluminescence and stability properties of upconversion fluorescent nanomaterial SiNWs: Er3+,Yb3+

被引:4
|
作者
Fan, ZhiDong [1 ]
Geng, XiaoPei [1 ]
Yang, RuiChen [1 ]
Liu, BoNing [2 ]
机构
[1] Chengde Petr Coll, Dept Math & Phys, Chengde 067000, Peoples R China
[2] Hebei Univ, Ind & Commercial Coll, Baoding 071002, Peoples R China
来源
OPTIK | 2018年 / 170卷
关键词
Photoluminescence; Er3+Yb3+ doped; Si nanowires; Upconversion; NANOPARTICLES; EMISSION;
D O I
10.1016/j.ijleo.2018.05.084
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Rare earth upconversion fluorescent nanomaterials have drawn great attention as novel fluorescent probes because of their many unique merits, such as superior photostability, narrow emission spectra, long lifetime and larger Stokes shift. In this paper, the upconversion fluorescent nanomaterials SiNWs:Er3+,Yb3+ was prepared at the temperature of 1200 degrees C, doping time is 60 min, gas flow rate of N-2 is 1000sccm by mixed Er2O3 (99.9%) and Yb2O3 (99.9%) (Yb:Er = 2:1) powders with Si nanowires (SiNWs). At room temperature, the photoluminescence characteristics of SiNWs: Er3+,Yb3+ were tested using near infrared laser with the wavelength is 980 nm, the power is 3 W as excitation light source. The results show that the SiNWs:Er3+,Yb3+ produced green and red emission band of Er3+ with 520-570 nm (H-2(11/2) -> S-4(3/2)) and 640-680 nm (F-4(9/2) -> I-4(15/2)) using laser excitation with a wavelength of 980 nm. The Yb3+ acting as a sensitizer absorbed the infrared light of near 980 nm and then transferred energy to the luminescence center of Er3+. In addition, the SiNWs: Er3+,Yb3+ demonstrates good time stability, strong resistance to photobleaching capacity, better stability against acid and alkali, and good biocompatibility. Therefore, the fluorescent nanomaterials SiNWs: Er3+,Yb3+ has great potential application value in various areas such as solar cell, fluorescence labeling, and biological detection.
引用
收藏
页码:152 / 155
页数:4
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