Chinese Journal of Lasers, Volume. 50, Issue 6, 0603003(2023)
Enhancement of Near-Infrared Persistent Luminescence of BaGa2O4∶Cr3+ by Sm3+ Ion Doping
Fig. 1. Characterization of BGO∶Cr0.06, Smx. (a) XRD patterns of BGO∶Cr0.06, Smx (x=0, 0.002, 0.004, 0.006, 0.008, 0.010) PersL materials; (b) refinement XRD patterns of BGO∶Cr0.06, Sm0.004 PersL materials; (c) crystal structure of BGO∶Cr0.06, Sm0.004 PersL material; (d) SEM picture of BGO∶Cr0.06, Sm0.004 PersL material; (e) EDS spectrum of BGO∶Cr0.06, Sm0.004 PersL material; (f) element distribution mapping of BGO∶Cr0.06, Sm0.004 PersL material
Fig. 2. Optical properties of BGO∶Cr0.06,Smx. (a) Gaussian fitting curves of emission spectra of BGO∶Cr0.06, Smx (x=0, 0.002, 0.004, 0.006, 0.008, 0.010) PersL materials; (b) afterglow decay curves of BGO∶Cr0.06, Smx (x=0, 0.004) PersL materials; (c) afterglow decay fitting curve of BGO∶Cr0.06, Sm0.004 PersL material; (d) thermoluminescence of BGO∶Cr0.06, Sm0.004 PersL material; (e) two-dimensional thermoluminescence curve of BGO∶Cr0.06, Sm0.004 PersL material; (f) NIR persistent luminescence mechanism of BGO∶Cr, Sm PersL materials
Fig. 3. CIE color coordinates of PersL materials. (a) BGO∶Cr0.06; (b) BGO∶Cr0.06,Sm0.004
Fig. 4. Thermal stability of BGO∶Cr0.06, Sm0.004 PersL material. (a) Emission spectra from 30 to 300 ℃; (b) contour graph of thermal quenching behavior; (c) temperature-dependent integrated intensity and full width at half-maximum (FWHM)
Fig. 5. XRD patterns and emission spectra of BGO∶Cr0.06, Sm0.004 PersL material prepared at different calcination temperatures. (a) XRD patterns; (b) emission spectra
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Qianting Yang, Risalat Emin, Yanmei Sun, Renagul Abdurahman, Xuefeng Sun, Tongsheng Yang. Enhancement of Near-Infrared Persistent Luminescence of BaGa2O4∶Cr3+ by Sm3+ Ion Doping[J]. Chinese Journal of Lasers, 2023, 50(6): 0603003
Category: Materials
Received: Mar. 25, 2022
Accepted: May. 7, 2022
Published Online: Feb. 28, 2023
The Author Email: Abdurahman Renagul (renagul111@aliyun.com)