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Shri Mata Vaishno Devi University

Nanotechnology Cell

(Approved by UGC under Section 2(F) & Section 12(B) of UGC Act of 1956)


© 2015 with      Team Nanotechnology Cell, Shri Mata Vaishno Devi University, Kakryal,

Katra-182320 (J&K), India Phone: +91 1991 285699 extn. 2509;  

Fax: +91 1991 285694 Email: nanocell@smvdu.ac.in   

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NanoCell brochure.pdf

     Information Brochure

Palvi Gupta

Research Scholar

Department of Physics (SOP)

Shri Mata Vaishno Devi University, Katra (J&K)

E-mail:-shrutiaug.gupta@gmail.com



Palvi Gupta completed her M.Sc. degree in Physics in 2009 and completed her M.Phil. in 2010 from University of Jammu. Presently, she is pursuing Ph.D. in Nanoscience and Nanotechnology. Her area of research targets Nanophosphates from the perspective of luminance studies. Research Area: Luminescence, solid state lighting, LED’S, radiation dosimetry.



  1. P. Gupta, A.K. Bedyal, V. Kumar, Y. Khajuria, V. Kumar, O. M. Ntwaeaborwa and H. C. Swart, “Spectral and surface investigations on Eu3+ doped K3Y(PO4)2 nanophosphor: A promising orange–red phosphor for white light-emitting diodes”, Opt. Mater. 36 (2014) 996–1001.
  2. P. Gupta, A.K. Bedyal, V. Kumar, Y. Khajuria, O. M. Ntwaeaborwa and H. C. Swart, “A Promising Orange-Red Nanocrystalline Potassium Lanthanum Orthophosphate for White Light-Emitting Diodes”, Ind. J. of Mat. Sci. Volume 2014, Article ID 794680, 4 pages; doi:10.1155/2014/794680
  3. P. Gupta, A.K. Bedyal, V. Kumar, Y. Khajuria, S.P. Lochab, S.S. Pitale, O. M. Ntwaeaborwa and H. C. Swart, “Photoluminescence and thermoluminescence properties of Tb3+ doped K3Gd(PO4)2 nanophosphor” Mater. Res. Bul.  60 (2014) 401-411.
  4. P. Gupta, A.K. Bedyal, V. Kumar, Y. Khajuria, V. Sharma, V. Kumar, O. M. Ntwaeaborwa and H. C. Swart, “Energy transfer    mechanism from Gd3+ to Sm3+ in K3Gd(PO4)2:Sm3+ phosphor”, Mater. Res. Express, 2 (2015) 076202.
  5. P. Gupta, A.K. Bedyal, V. Kumar, V. K. Singh, Y. Khajuria, O. M. Ntwaeaborwa and H. C. Swart, “Thermoluminescence and glow curves analysis of g-exposed Eu3+ doped K3Y(PO4)2 nanophosphors”, Mater. Res. Bul.  73 (2016) 111-118.


Publication(s)