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Original Articles

Transport properties of phosphomolybdate and phosphotungstate glasses

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Pages 203-216 | Received 12 Nov 1987, Accepted 05 Jan 1988, Published online: 20 Aug 2006

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C. Renuka, R.K. Raju & C. Rakkappan. (2023) Structural studies of molybdo-phosphate glasses doped with Zn2+ and Cl- ions. Materials Today: Proceedings.
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Małgorzata Ciecińska, Paweł Goj, Agata Stoch & Paweł Stoch. (2019) Thermal properties of 60P2O5–(40−x)Al2O3–xNa2O glasses. Journal of Thermal Analysis and Calorimetry 139:3, pages 1763-1769.
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Paweł Stoch, Paweł Goj, Małgorzata Ciecińska & Agata Stoch. (2019) Structural features of 19Al2O3-19Fe2O3-62P2O5 glass from a theoretical and experimental point of view. Journal of Non-Crystalline Solids 521, pages 119499.
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Pawel Stoch, Agata Stoch, Malgorzata Ciecinska, Ireneusz Krakowiak & Maciej Sitarz. (2016) Structure of phosphate and iron-phosphate glasses by DFT calculations and FTIR/Raman spectroscopy. Journal of Non-Crystalline Solids 450, pages 48-60.
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S.S. Das, P.K. Srivastava & N.B. Singh. (2012) Fast ion conducting phosphate glasses and glass ceramic composites: Promising materials for solid state batteries. Journal of Non-Crystalline Solids 358:21, pages 2841-2846.
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M Dimakogianni & G P Triberis. (2010) The effect of correlations on the non-ohmic behavior of the small-polaron hopping conductivity in 1D and 3D disordered systems. Journal of Physics: Condensed Matter 22:35, pages 355305.
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S.S. Das, N.P. Singh & P.K. Srivastava. (2009) Ion conducting phosphate glassy materials. Progress in Crystal Growth and Characterization of Materials 55:3-4, pages 47-62.
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T. Sankarappa, G.B. Devidas, M. Prashant Kumar, Santosh Kumar & B. Vijaya Kumar. (2009) ac conductivity studies in single and mixed alkali vanadophosphate glasses. Journal of Alloys and Compounds 469:1-2, pages 576-579.
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G.B. Devidas, T. Sankarappa, B.K. Chougule & G. Prasad. (2007) DC conductivity in single and mixed alkali vanadophosphate glasses. Journal of Non-Crystalline Solids 353:4, pages 426-434.
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B.B. Das, R. Ambika, S. Ageetha & P. Vimala. (2004) EPR and magnetic susceptibility studies on polaron dynamics in V2O5-, MoO3- and CuO-containing glasses. Journal of Magnetism and Magnetic Materials 272-276, pages E1637-E1638.
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K.J Rao, H Benqlilou-Moudden, G Couturier, P Vinatier & A Levasseur. (2002) Structure and electrical properties of sputtered lithium cobaltite thin films. Materials Research Bulletin 37:7, pages 1353-1367.
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J.D. Bernal. 2002. Structural Chemistry of Glasses. Structural Chemistry of Glasses 307 373 .
Sarah Jacob, John Javornizky, George H Wolf & C.Austen Angell. (2001) Oxide ion conducting glasses. International Journal of Inorganic Materials 3:3, pages 241-251.
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A.A Bahgat, M.M El-Samanoudy & A.I Sabry. (1999) Optical and electrical properties of binary WO3–Pb3O4 glasses. Journal of Physics and Chemistry of Solids 60:12, pages 1921-1931.
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G.P. Triberis, N. Guskos & V. Likodimos. (1994) Small-polaron hopping conductivity in the PrBa2Cu3?xGaxO7?y system. Physica C: Superconductivity 228:1-2, pages 33-41.
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G.P. Triberis. 1992. Eurogel '91. Eurogel '91 265 272 .
G P Triberis, X Zianni, A N Yannacopoulos & V C Karavolas. (1991) The effect of the density of states on the conductivity of the small-polaron hopping regime in disordered systems. Journal of Physics: Condensed Matter 3:3, pages 337-346.
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B.V.R. Chowdari, K.L. Tan, W.T. Chia & R. Gopalakrishnan. (1990) X-ray photoelectron spectroscopic studies of molybdenum phosphate glassy system. Journal of Non-Crystalline Solids 119:1, pages 95-102.
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