Journal of Modern Physics

Journal of Modern Physics

ISSN Print: 2153-1196
ISSN Online: 2153-120X
www.scirp.org/journal/jmp
E-mail: jmp@scirp.org
"Study of Structural and Electrical Properties of a New Type of Complex Tungsten Bronze Electroceramics; Li2Pb2Y2W2Ti4V4O30"
written by Piyush R. Das, B. Pati, B.C. Sutar, R.N.P. Choudhury,
published by Journal of Modern Physics, Vol.3 No.8, 2012
has been cited by the following article(s):
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[14] Conductivity relaxations and phase purity in strontium cobalt oxides prepared by numerous chemical routes
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[15] Investigation of electrical properties and conduction mechanism using CBH model of Ba 0.97 La 0.02 Ti 1− x Nb 4x/5 O 3 (x= 0.00 and 0.02) compounds
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[16] Dielectric Relaxation, Conductivity Mechanism and Complex Impedance Spectroscopic Studies of Pure and Cadmium Mixed Cobalt Levo-Tartrate Crystals
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[17] Ionic transport properties of Mg2Ti2Zr5O16 functional material
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[18] Synthesis and characterization of AZrTi2O7 (A = mg, ca, Sr and Ba) functional nanoceramics
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[20] Green synthesis approach for nano sized CoFe2O4 through aloe vera mediated sol-gel auto combustion method for high frequency devices
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[21] Structural and electrical properties of Ca0. 9Dy0. 1MnO3 prepared by sol-gel technique.
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[22] Dielectric, multiferroic and magnetodielectric properties of Co/Fe co-doped Bi4Ti3O12 ceramics
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[23] Low-frequency thermally-assisted electrical resonance in V2O5/C composites
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[24] The influence of nickel ions on the electric behaviour of P2O5–ZnO–Na2O glassy system
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[26] Band engineering via grain boundary defect states for large scale tuning of photoconductivity in Bi1−xCaxFe1−yTiyO3−δ
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[29] Dielectric and conduction mechanism studies of Ni doped LiMn2O4 synthesized by solution combustion method
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[30] Interdependence between electrical and magnetic properties of polycrystalline cobalt-substituted tungsten bronze multiferroic ceramics
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[31] Structural and electrical properties of La0.9Dy0.1MnO3 prepared by sol–gel technique
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[32] Structural, Optical and Impedance Spectroscopic Characterizations of Nanocrystalline A2Ti2Zr5O16 (A = Mg, Ca, Ba and Sr)
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[33] Structural and Electrical Properties of Barium Strontium Cobaltite Nanoparticles Synthesized by Wet Chemical Methods
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[34] Perspektivní materiály pro dielektrické obvody elektrických zařízení
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[35] Effect of pH on the electrical properties and conducting mechanism of SnO2 nanoparticles
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[36] Effect of pH on the electrical properties and Conducting mechanism of SnO 2 nanoparticles
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[37] Temperature dependent dielectric and electric modulus properties of ZnS nano particles
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[40] Structural and local physical properties of relaxor ferroelectric thin films
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[42] Conduction mechanism model, impedance spectroscopic investigation and modulus behavior of the organic–inorganic [(C 3 H 7) 4 N][SnCl 5 (H 2 O)]· 2H 2 O …
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[43] Structural Dependence of Conductivity in Rare Earth Doped Strontium Cobaltite Nanoparticles
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[44] Synthesis, structural and dielectric properties of Ho-doped SrBi2Nb2O9 prepared by Co-precipitation method
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[45] Conduction mechanism model, impedance spectroscopic investigation and modulus behavior of the organic–inorganic [(C 3 H 7) 4 N][SnCl 5 (H 2 O)]· 2H 2 O …
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[46] Hydrothermally Synthesized h-MoO3 and α-MoO3 Nanocrystals: New Findings on Crystal Structure Dependent Charge Transport
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[47] Mn‐Doped Ba0. 45Sr0. 55TiO3 Ceramic Systems: Dielectric and Impedance Spectroscopic Characterization
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[48] Dielectric studies of multiferroic orthochromites Ho 0.9 (RE) 0.1 CrO 3 (where RE= Gd and Yb)
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[49] Dielectric studies of multiferroic orthochromites Ho0. 9 (RE) 0.1 CrO3 (where RE= Gd and Yb)
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[50] Mn‐Doped Ba0.45Sr0.55TiO3 Ceramic Systems: Dielectric and Impedance Spectroscopic Characterization
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[51] Synthesis, structural and dielectric properties of Ho-doped SrBi 2 Nb 2 O 9 prepared by Co-precipitation method
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[52] Preparation and Characterization of Lithium ion conducting solid polymer electrolytes from biodegradable polymers Starch and PVA
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[53] Efecto de la incorporación de cobalto en las propiedades del sistema SrxBa1-xNb2O
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[54] Effect of cobalt-incorporation on the properties of SrxBa1-xNb2O6 system
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[55] Efecto de la incorporación de cobalto en las propiedades del sistema Sr xBa1-x Nb2O6
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[56] Efecto de la incorporación de cobalto en las propiedades del sistema SrxBa1-xNb2O6
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[57] Effect of cobalt-incorporation on the properties of Sr xBa1-xNb2O6 system
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[58] Efecto de la incorporación de cobalto en las propiedades del sistema Sr x Ba 1-x Nb 2 O 6.
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[59] Novel CuFeS 2 pellet behaves like a portable signal transporting network: studies of immittance
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[60] Efecto de la incorporación de cobalto en las propiedades del sistema Sr x Ba Nb 2 O 6
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[61] Investigation on the Growth and Characterization of Novel Creatininium malate Single Crystal
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