Defect modulation and color tuning of MgO: Probing the influence of Sm and Li dopants through x-ray absorption, photoluminescence, and thermoluminescence spectroscopy

Authors
Bishnoi, PriyankaBrajpuriya, RanjeetSharma, AdityaChae, KHWon, Sung OkVij, Ankush
Issue Date
2024-10
Publisher
Elsevier BV
Citation
Journal of Alloys and Compounds, v.1002
Abstract
Pure, singly doped (Sm), and co -doped (Sm, Li) MgO nanoparticles have been prepared using the solution combustion method. X-ray diffraction (XRD) analysis has revealed the development of microstrain, alteration in the unit -cell parameters, and dislocation/defect densities in the MgO lattice as a function of Sm and Sm +Li doping. Transmission electron microscopy (TEM) images and selected area electron diffraction (SAED) patterns illustrate the formation of polycrystalline samples ranging from 45 nm to 65 nm in size. X-ray absorption nearedge structure (XANES) spectroscopy at Sm L -edge confirms the presence of the +3 valance state of Sm dopants. Mg K -edge XANES features convey the lesser coordination of Mg 2 + ions upon increasing the Sm 3 + ions. O K -edge XANES convey the formation of O 2- vacancies or F centers upon Sm 3 + doping. Two excitation wavelengths, lambda excitation = 275 nm, and lambda excitation = 405 nm, have shown significant emission at blue and yellow -red regions, respectively. Additionally, utilizing XANES as a methodological tool for examining defects and incorporating PL and TL findings provides a comprehensive understanding that is relatively infrequent in previous research. Thermoluminescence (TL) studies, conducted over a temperature range of 340 K to 675 K with three irradiation doses of gamma-rays (100 Gy, 500 Gy, and 1000 Gy) are convincing the formation of multiple levels of radiative traps, enhancing peak intensity at 437 K and radiation doses independent of peak intensity at 437 K.
Keywords
LUMINESCENT PROPERTIES; COMBUSTION SYNTHESIS; DOPED MGO; PHOSPHORS; CENTERS; SURFACE; Photoluminescence; Thermoluminescence; XANES; MgO
ISSN
0925-8388
URI
https://pubs.kist.re.kr/handle/201004/150206
DOI
10.1016/j.jallcom.2024.175270
Appears in Collections:
KIST Article > 2024
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