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Browsing by Author Prabhakar Rao, P
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Showing results 1 to 20 of 70
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Issue Date
Title
Author(s)
2015
Brilliant IR Reflecting Yellow Colorants in Rare Earth Double Molybdate Substituted BiVO4 solid solutions for Energy saving applications
Sameera, S
;
Prabhakar Rao, P
;
Divya, S
;
Athira Raj, K V
2013
Brilliant yellow color and enhanced NIR reflectance of monoclinic BiVO4 through distortion in VO43 tetrahedra
Sandhya Kumari, L
;
Prabhakar Rao, P
;
Radhakrishnan, A N
;
Vineetha, J
;
Sameera, S
;
Peter Koshy
2017-08-31
Color - Tunable Phosphors in Weberite Type System, La3 SbO7:Bi3+, Eu3+ for Near-UV LED Applications
Suchithra, V G
;
Prabhakar Rao, P
;
Aswathy, B A
2016-02
Effect of Host Structure on the Photoluminescence Properties of Ln3TaO7:Eu3+ Red Phosphors
Linda Francis, T
;
Prabhakar Rao, P
;
Mahesh, S K
;
Sreena, T S
;
Parvathi Babu, S
2014
Effect of Zr4+ and Si4+ substitution on the luminescence properties of CaMoO4:Eu3+ red phosphors
Linda Francis, T
;
Prabhakar Rao, P
;
Mariyam Thomas
;
Mahesh, S K
;
Reshmi, V R
2010
Electrical conductivity and impedance spectroscopy studies of cerium based aeschynite type semiconducting oxides: CeTiMO6 (M = Nb or Ta)
Sumi, S
;
Prabhakar Rao, P
;
Deepa, M
;
Peter Koshy
2012
Electrical transport properties of manganese containing pyrochlore type semiconducting oxides using impedance analyses
Sumi, S
;
Prabhakar Rao, P
;
Mahesh, S K
;
Peter Koshy
2013
Enhanced Eu3+ red luminescence in scheelite based oxides, CaLaSbWO8
Reshmi, V R
;
Prabhakar Rao, P
;
Mariyam Thomas
;
Mahesh, S K
;
Linda Francis, T
2017-06
Enhanced Near Infrared Reflectance with Brilliant Yellow Hues in Scheelite Type Solid Solutions, (LiLaZn)1/3MoO4−BiVO4 for Energy Saving Products
Aju Thara, T R
;
Prabhakar Rao, P
;
Divya, S
;
Athira, K V R
;
Sreena, T S
2018-11
Exploitation of Eu3+ Red Luminescence Through Order–Disorder Structural Transitions In Lanthanide Stannate Pyrochlores For Warm White LED Applications
Sreena, T S
;
Prabhakar Rao, P
;
Athira, K V Raj
;
Aju Thara, T R
2005
Grain growth of microtubes during sintering in semiconducting Ba3Ce3 xBixTi5Nb5O30 (x 5 0.5, 1.0, 2.0, and 3.0) Ceramics
Prabhakar Rao, P
;
Ravindran Nair, K
;
Chandran, M R
;
Peter Koshy
2015-05
Impedance spectroscopic investigation on electrical conduction and relaxation in manganese substituted pyrochlore type semiconducting oxides
Sumi, S
;
Prabhakar Rao, P
;
Peter Koshy
2005
Improved dielectric properties in pyrochlore type oxides: Ca3Sm3−xBixTi7Nb2O26.5 (x = 1.0, 2.0 or 3.0) by Bi substitution
Prabhakar Rao, P
;
Ravindran Nair, K
;
Divya, P
;
Peter Koshy
;
Vaidyan, V K
2012-07
Improvement of morphology and luminescence properties of powellite type red phosphors CaGd1 xNbMoO8: xEu3+ synthesized via citrate gel route
Mariyam Thomas
;
Prabhakar Rao, P
;
Mahesh, S P K
;
Reshmi, V R
;
Linda Francis, T
;
Peter Koshy
2015
Induced oxygen vacancies and their effect on the structural and electrical properties of a fluorite-type CaZrO3–Gd2Zr2O7 system
Vaisakhan Thampi
;
Prabhakar Rao, P
;
Radhakrishnan, A N
2014-05
Influence of (LiLa) 1/2MoO4 substitution on the pigmentary properties of BiVO4
Sameera, S
;
Prabhakar Rao, P
;
Vineetha James
;
Divya, S
;
Athira Raj, K V
2014
Influence of Ce substitution on the order-to-disorder structural transition, thermal expansion and electrical properties in Sm2Zr2_xCexO7 system
Vaisakhan Thampi, D S
;
Prabhakar Rao, P
;
Radhakrishnan, A N
2011
Influence of disorder-to-order transition on lattice thermal expansion and oxide ion conductivity in (CaxGd1-x) 2 (Zr1-xMx)2 O-7 pyrochlore solid solutions
Radhakrishnan, A N
;
Prabhakar Rao, P
;
Mary Linsa, K S
;
Deepa, M
;
Peter Koshy
2018-05
Influence of Morphology on Luminescence Properties of Xenotime-type Phosphors NaYP2O7:Eu3+ Synthesized via Solid State and Citrate-gel Routes
Sreena, T S
;
Prabhakar Rao, P
;
Ajmal, K N
;
Athira, K V R
2017-11-15
Influence of phase transition from order to disorder and Philip’s Ionicity on the Thermal Expansion Coefficient of Pyrochlore Type Compositions With a Multivalent Environment
Renju, U A
;
Prabhakar Rao, P
;
Vaisakhan Thampi, D S