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Luminescence properties of LiYF4:Yb3+, Er3+ phosphors: A study on influence of synthesis temperature and dopant concentration

Publication Type : Journal Article

Publisher : Optik

Source : Optik, Elsevier GmbH, Volume 169, p.147-155 (2018)

Url : https://www.scopus.com/inward/record.uri?eid=2-s2.0-85047269797&doi=10.1016%2fj.ijleo.2018.05.023&partnerID=40&md5=7a5d6202a668ec072ca80b354f3e7cb9

Keywords : Doping (additives), Fluorine compounds, Infrared devices, Lithium Fluoride, Luminescence, Luminescence properties, Near-infrared diode laser, Phosphors, Photoluminescence, Rare earth fluorides, Rare earths, Solid state reactions, Structural and morphological properties, Synthesis temperatures, Up-conversion emission, Up-conversion luminescence, Upconversion phosphors

Campus : Coimbatore

School : School of Engineering

Department : Sciences

Year : 2018

Abstract : Yb3+ and Er3+ doped LiYF4:RE3+ (RE = Yb, Er) phosphors have been synthesized using solid state reaction of pre-converted rare earth fluorides and lithium fluoride. Structural and morphological properties of the synthesized fluoride phosphors are examined. Upconversion emission studies performed in the developed phosphors showed blue, green and red emission bands under 980 nm excitation. Effect of Yb3+ ions concentration and synthesis temperature on the upconversion emission bands has been investigated. As the synthesis temperature increased the phosphors exhibited intense upconversion luminescence. The colour co-ordinate analysis confirmed the strong green emission under upconversion process. Luminescence in synthesized phosphors have also been investigated with respect to 378 nm excitation. The prepared phosphors have shown good luminescent properties and could be a potential candidate for luminescent based device fabrications. © 2018 Elsevier GmbH

Cite this Research Publication : K. Janani, Dr. S. Ramasubramanian, Soni, A. K., Rai, V. K., and Thiyagarajan, P., “Luminescence properties of LiYF4:Yb3+, Er3+ phosphors: A study on influence of synthesis temperature and dopant concentration”, Optik, vol. 169, pp. 147-155, 2018.

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