Synthesis and Luminescence Studies of Eu2+ doped MgSiO3 Inorganic Phosphors for Energy Storage Phosphors

Authors

  • Amol Nande Department of Physics, Guru Nanak College of Science, Ballarpur (Maharashtra)

DOI:

https://doi.org/10.61343/jcm.v2i01.141

Keywords:

Luminescence, Eu2+, EVI parameter, Silicates

Abstract

The inorganic luminescence materials is widely studies for several applications including displays, light emitting didoes, energy storage etc. In this research work, the authors have synthesized MgSiO3:Eu2+ inorganic phosphor using modified solid state reaction method. The prepared samples were sent for photoluminescence to study emission and excitation properties. The emission and excitation properties show broad peak which are suitable for long lasting luminescence behavior. Thus, this material can be a good candidate for energy or data storage material. Along with experimental measurements, the emission spectra can be stimulated suing theoretical model. The both emission spectra matched with each other. 

References

G. Blasse, "The physics of new luminescent materials," Materials chemistry and physics, vol. 16, pp. 201-236, 1987.

C. Ronda, "Challenges in application of luminescent materials, a tutorial overview (invited review)," Progress In Electromagnetics Research, vol. 147, pp. 81-93, 2014.

C. Zhang and J. Lin, "Defect-related luminescent materials: synthesis, emission properties and applications," Chemical Society Reviews, vol. 41, pp. 7938-7961, 2012.

S. Wang, Z. Song, Y. Kong, and Q. Liu, "Relationship of Stokes shift with composition and structure in Ce3+/Eu2+-doped inorganic compounds," Journal of Luminescence, vol. 212, pp. 250-263, 2019.

D. Geng, M. Shang, Y. Zhang, H. Lian, and J. Lin, "Color-tunable and white luminescence properties via energy transfer in single-phase KNaCa2 (PO4) 2: A (A= Ce3+, Eu2+, Tb3+, Mn2+, Sm3+) phosphors," Inorganic chemistry, vol. 52, pp. 13708-13718, 2013.

H. Terraschke and C. Wickleder, "UV, Blue, Green, Yellow, Red, and Small: Newest Developments on Eu2+-Doped Nanophosphors," Chemical Reviews, vol. 115, pp. 11352-11378, 2015/10/28 2015.

B. Wang, H. Wang, J. Huang, J. Zhou, and P. Liu, "Trap distribution and photo-stimulated luminescence in LaSrAl3O7:Eu2+ long-lasting phosphors for optical data storage," Journal of the American Ceramic Society, vol. 103, pp. 315-323, 2020.

P. Li, Y. Tian, F. Huang, L. Lei, M. Cai, S. Xu, et al., "Highly efficient photostimulated luminescence of Pb2+ doped SrAl2O4:Eu2+, Dy3+ borate glass for long-term stable optical information storage," Journal of the European Ceramic Society, vol. 42, pp. 5065-5073, 2022/09/01/ 2022.

K. N. Shinde, "Luminescence in Eu2+ and Ce3+ doped SrCaP2O7 phosphors," Results in Physics, vol. 7, pp. 178-182, 2017/01/01/ 2017.

H.-S. Roh, S. Hur, H. J. Song, I. J. Park, D. K. Yim, D.-W. Kim, et al., "Luminescence properties of Ca5(PO4)2SiO4:Eu2+ green phosphor for near UV-based white LED," Materials Letters, vol. 70, pp. 37-39, 2012/03/01/ 2012.

S. A. Pardhi, G. B. Nair, R. Sharma, and S. Dhoble, "Investigation of thermoluminescence and electron-vibrational interaction parameters in SrAl2O4: Eu2+, Dy3+ phosphors," Journal of Luminescence, vol. 187, pp. 492-498, 2017.

P. D. Bhoyar and S. Dhoble, "Study of electron vibrational interaction parameters in chlorophosphate activated with Eu2+ ion," Materials Chemistry and Physics, vol. 147, pp. 488-491, 2014.

A. R. Kadam, G. C. Mishra, M. Michalska-Domanska, and S. Dhoble, "Theoretical analysis of electron vibrational interaction (EVI) parameters in 5d states of Eu2+ activated BaSiF6 downconversion phosphor," Journal of Molecular Structure, vol. 1229, p. 129505, 2021.

Published

2024-04-28

How to Cite

1.
Nande DA. Synthesis and Luminescence Studies of Eu2+ doped MgSiO3 Inorganic Phosphors for Energy Storage Phosphors. J. Cond. Matt. [Internet]. 2024 Apr. 28 [cited 2025 Mar. 10];2(01):24-6. Available from: https://jcm.thecmrs.in/index.php/j/article/view/141

Issue

Section

Research Article

Categories