International E-publication: Publish Projects, Dissertation, Theses, Books, Souvenir, Conference Proceeding with ISBN.  International E-Bulletin: Information/News regarding: Academics and Research

Synthesis and Luminescence Characteristics of Gd3+ Activated LiCa4(BO3)3 Phosphor

Author Affiliations

  • 1Department of Physics, S.G.B.A.U, Amravati (MH)-444601, India

Res.J.chem.sci., Volume 6, Issue (7), Pages 12-15, July,18 (2016)

Abstract

LiCa4(BO3)3dopedGd3+phosphor was successfully and intentionally synthesized by the modified conventional solidstate diffusion(SSD) method. The phase purity of sample was characterizedby powder X-ray diffraction(XRD).The photoluminescence (PL) property was studie dusinga HitachiF-7000 spectro photometeratroom temperature.The sample LiCa4(BO3)3:Gd3+showintensenarrow UVBe missiono fGd3+at 314nm(corresponds to 6PJ8S7/2)under the excitation of 275nm.The emissionspectrum of the phosphorisobservedin the UV regionandhence the phosphorcanbe potential candidate formedical applications.

References

  1. Kaneko K., Takei Y., Aoki T., Ikeda S., Matsunami H. and Lynch S. (2000)., Bilirubin adsorption therapy and subsequent liver transplantation cured severe bilirubin encephalopathy in a long-term survival patient with Crigler-Najjar disease type I., Int. Med., 39, 961-967.
  2. Dittmar H., Pflieger D., Schopf E. and Simon J. (2001)., UVA1 phototherapy. Pilot study of dose finding in acute exacerbated atopic dermatitis., Hautarzt., 52, 423-430.
  3. Honigsmann H., Brenuer W. and Rauschmeier W. (1984)., Photochemotherapy for cutaneous T cell lymphoma. A follow-up study., Am. Acad. Dermatol., 10, 238-42.
  4. Scherschun L., Kim J.J. and Lim W.H. (2001)., Narrow band ultraviolet B is a useful and well tolerated treatment for vitiligo., J. Am. Acad. Dermatol., 44, 999-1003.
  5. Hawk J. (2000)., Sunbeds., Radiat. Prot. Dosim., 91, 143-148.
  6. Morita A., Kobayashi K., Isomura I., Tsuji T. and Krutmann J. (2000)., Ultraviolet A1 (340-400 nm) phototherapy for scleroderma in systemic sclerosis., J. Am. Acad. Dermatol., 43, 670-674.
  7. Weichenthal M. and Schwarz T. (2005)., Phototherapy: how does UV work?, Photodermatol. Photoimmunol. Photomed., 21, 260-266.
  8. Gawande A.B., Sonekar R.P. and Omanwar S.K. (2014)., Luminescence improvement in Pr3+ and Gd3+ activated Sr2Mg(BO3)2 inorganic phosphor., Mat. Res. Bull., 60, 285-291.
  9. H. Van Weelden, H. Baart de la Faille, E. Young and J.C. van der Leun (1988)., A new development in UVB phototherapy of psoriasis., British Journal of Dermatology, 199(1), 11-19.
  10. Johnson B., Green C., Lakshmipathi T. and Ferguson (1988)., Ultraviolet Radiation Phototherapy for Psoriasis: The use of a new Narrowband UVB fluorescent lamp., J. Light in biology and medicine, Plenum Press, NY, London., 173.
  11. Sonekar R., Omanwar S., Moharil S., Dhopte S. and Muthal P., Kondawar V. (2007)., Combustion synthesis of narrow UVB emitting rare earth borate phosphors., Opt. Mater., 30, 622-625.
  12. Palan C.B., Koparkar K.A., Bajaj N.S. and Omanwar S.K. (2016)., Synthesis and TL/OSL properties of CaSiO3:Ce3+ biomaterial., Mater. Lett., 175, 288-290.
  13. Palan C.B., Bajaj N.S. and Omanwar S.K. (2016)., Luminescence properties of Eu 2+ doped SrB4O7 phosphor for radiation dosimetry., Mater. Res. Bull., 76, 216-221.
  14. Palan C.B., Koparkar K.A., Bajaj N.S., Soni A. and Omanwar S.K. (2016)., Synthesis and thermoluminescence/optically stimulated luminescence properties of CaB4O7:Ce3+ phosphor., J. Mater. Sci.: Mater. Electron., 27, 5600-5606.
  15. Bajaj N.S., Palan C.B., Koparkar K.A., Kulkarni M.S. and Omanwar S.K. (2016)., Preliminary results on effect of boron co-doping on CW-OSL and TL properties of LiMgPO4: Tb3+, B., J. Lumin., 175, 9-15.
  16. Palan C.B., Bajaj N.S., Soni A. and Omanwar S.K. (2016)., A novel KMgPO4: Tb3+ (KMPT) phosphor for radiation dosimetry., J. Lumin., 176, 106-111.
  17. Pekgozlu I. (2013)., A novel UV-emitting phosphor:LiSr4 (BO3)3:Pb2+., J. Lumin., 143, 93-95.