Investigation of structural and impedance spectroscopic properties of borate glasses with high Li+ concentration
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M. Bala | Sunil Rohilla | Susheel Arora | J. Dalal | Vibhor Kumar | Anand Kumar | Mohini Boora | Somil Malik
[1] Y. Sharma,et al. Effect of Na2O on physical, structural and electrical properties of borate glasses , 2021 .
[2] E. Kamitsos,et al. Lithium ion sites and their contribution to the ionic conductivity of RLi2O-B2O3 glasses with R ≤ 1.85 , 2021 .
[3] M. Bala,et al. Effect of replacement of Bi2O3 by Li2O on structural, thermal, optical and other physical properties of zinc borate glasses , 2020 .
[4] L. Campo,et al. Ionic conductivity and boron anomaly in binary lithium borate melts , 2020 .
[5] L. Pavić,et al. Dielectric dispersion and impedance spectroscopy of NiO doped Li2SO4–MgO–P2O5 glass system , 2020 .
[6] A. Mostafa,et al. Structural, mechanical and radiation shielding properties of newly developed tungsten lithium borate glasses: An experimental study , 2020 .
[7] E. Kavaz. An experimental study on gamma ray shielding features of lithium borate glasses doped with dolomite, hematite and goethite minerals , 2019, Radiation Physics and Chemistry.
[8] M. Smedskjaer,et al. Statistical Mechanical Modeling of Borate Glass Structure and Topology: Prediction of Superstructural Units and Glass Transition Temperature. , 2019, The journal of physical chemistry. B.
[9] C. Tsonos. Comments on frequency dependent AC conductivity in polymeric materials at low frequency regime , 2018, Current Applied Physics.
[10] V. Kumar,et al. Dielectric dispersion, dipolar relaxation and a.c. conduction phenomena of NiO doped lead bismuth silicate glass system , 2018, Journal of Non-Crystalline Solids.
[11] D. Singh,et al. Spectroscopic investigations of Sm3+-doped lead alumino-borate glasses containing zinc, lithium and barium oxides , 2018, Journal of Alloys and Compounds.
[12] E. Kavaz,et al. Gamma ray buildup factors of lithium borate glasses doped with minerals , 2018, Journal of Alloys and Compounds.
[13] L. Campo,et al. Ionic conductivity of lithium borate glasses and local structure probed by high resolution solid-sate NMR , 2018 .
[14] M. S. Dahiya,et al. Electrical characterization of lithium bismuth borate glasses containing cobalt/vanadium ions , 2017 .
[15] Lakhwant Singh,et al. Structural properties and electrical transport characteristics of modified lithium borate glass ceramics , 2017 .
[16] R. Gedam,et al. Intense white light luminescent Dy 3+ doped lithium borate glasses for W-LED: A correlation between physical, thermal, structural and optical properties , 2017 .
[17] S. Murugavel,et al. Conductivity and modulus formulation in lithium modified bismuth zinc borate glasses , 2016 .
[18] M. S. Dahiya,et al. EPR and impedance spectroscopic investigations on lithium bismuth borate glasses containing nickel and vanadium ions. , 2016, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[19] R. Gedam,et al. Physical and optical properties of Dy3+/Pr3+ Co-doped lithium borate glasses for W-LED , 2016 .
[20] Shivani Sharma,et al. Complex dielectric and impedance behavior of magnetoelectric Fe2TiO5 , 2015, 1512.03889.
[21] M. Kaur,et al. Effect of BaTiO3 on the structural and optical properties of lithium borate glasses , 2015 .
[22] R. Kundu,et al. Electronic transport and relaxation studies in bismuth modified zinc boro-tellurite glasses , 2015 .
[23] M. S. Dahiya,et al. Effect of substituting iron on structural, thermal and dielectric properties of lithium borate glasses , 2015 .
[24] S. Murugavel,et al. DC Conduction and Electric Modulus Formulation of Lithium-Doped Bismuth Zinc Vanadate Semiconducting Glassy System , 2015 .
[25] D. Ramteke,et al. Spectroscopic Properties of Dysprosium Oxide Containing Lithium Borate Glasses , 2015 .
[26] N. Veeraiah,et al. Spectroscopic properties and luminescence behaviour of europium doped lithium borate glasses , 2014 .
[27] S. Hashim,et al. Impact of Nd3+ ions on physical and optical properties of Lithium Magnesium Borate glass , 2014 .
[28] M. Gazda,et al. Nanostructure and dielectric behavior of vanadate glasses containing BaTiO3 , 2014 .
[29] I. Guedes,et al. Impedance spectroscopy study of SiO2–Li2O:Nd2O3 glasses , 2014 .
[30] N. Kaur,et al. Gamma-radiation-induced dielectric relaxation characteristics of layered crystals of phlogopite mica , 2013 .
[31] M. Khairy,et al. Electrical properties of fast ion conducting silver based borate glasses: Application in solid battery , 2013 .
[32] D. Ramteke,et al. Electrical, dielectric and optical properties of La2O3 doped lithium borate glasses , 2013 .
[33] I. Murin,et al. Structure and electrical conductivity of Li2O-B2O3 glasses , 2013, Glass Physics and Chemistry.
[34] M. Valente,et al. Spectroscopic features of manganese doped tellurite borate glass ceramics , 2013 .
[35] P. Kistaiah,et al. Infrared and Raman spectroscopic studies of alkali bismuth borate glasses: Evidence of mixed alkali effect , 2012 .
[36] D. Ramteke,et al. Electrical and optical properties of lithium borate glasses doped with Nd2O3 , 2012 .
[37] G. Upender,et al. Structure, glass transition temperature and spectroscopic properties of 10Li2O-xP2O5-(89-x)TeO2-1CuO (5≤x≤25 mol%) glass system. , 2012, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[38] Y. C. Ratnakaram,et al. Structural and luminescence properties of Dy3+ ion in strontium lithium bismuth borate glasses , 2012 .
[39] G. Upender,et al. Optical, thermal and electrical properties of ternary TeO2–WO3–PbO glasses , 2011 .
[40] M. Shaaban,et al. Electrical properties and scaling behaviour of Sm3 + doped CaF2-bismuth borate glasses , 2011 .
[41] Poonam Sharma,et al. The effect of PbI2 on electrical conduction in Ag2O-V2O5-B2O3 superionic glass system , 2011 .
[42] C. P. Vardhani,et al. Structure, physical and thermal properties of WO3–GeO2–TeO2 glasses , 2010 .
[43] A. A. Soliman,et al. Effect of alkali content on AC conductivity of borate glasses containing two transition metals , 2009 .
[44] K. Varma,et al. Dielectric Relaxation in CaO–Bi2O3–B2O3 Glasses , 2009 .
[45] R. Vaish,et al. Dielectric properties of Li2O–3B2O3 glasses , 2009, 1007.1757.
[46] M. Gaafar,et al. Ultrasonic studies on alkali borate tungstate glasses , 2009 .
[47] N. Veeraiah,et al. Study of CaO–WO3–P2O5 glass system by dielectric properties, IR spectra and differential thermal analysis , 2002 .
[48] R. Bergman,et al. General susceptibility functions for relaxations in disordered systems , 2000 .
[49] G. S. Murugan,et al. Anomalous Dielectric Behaviour in Melt Quenched Lithium Borate Glasses , 1999 .
[50] Z. A. El-Hadi,et al. Physicochemical studies of some borate glasses containing nickel and titanium oxides in relation to their structure , 1999 .
[51] B. Chowdari,et al. Thermal, electrical and XPS studies of Ag2O.TeO2. P2O5 glasses , 1996 .
[52] G. Chryssikos,et al. The Glass-Transition Temperature of Lithium Alkali Borates , 1991 .
[53] G. Chryssikos,et al. Infrared reflectance spectra of lithium borate glasses , 1990 .
[54] H. Hirashima,et al. Electrical conductivity of vanadium phosphate glasses containing ZnO or GeO2 , 1988 .
[55] H. Jain,et al. Analysis of ac conductivity of glasses by a power law relationship , 1987 .
[56] G. Chryssikos,et al. Vibrational spectra of magnesium-sodium-borate glasses. 2. Raman and mid-infrared investigation of the network structure , 1987 .
[57] S. R. Elliott,et al. A.c. conduction in amorphous chalcogenide and pnictide semiconductors , 1987 .
[58] H. Jain,et al. The mixed alkali effect in lithium-sodium borate glasses , 1984 .
[59] C. Angell,et al. Fast ion motion in glassy and amorphous materials , 1983 .
[60] J. Shelby. Thermal Expansion of Alkali Borate Glasses , 1983 .
[61] W. Charewicz,et al. Competitive transport of alkali metal ions from aqueous solutions into toluene by highly lipophilic crown ether carboxylic acids , 1982 .
[62] H. Jain,et al. Mixed isotope electrical conductivity in lithium borate glasses , 1982 .
[63] P. B. Macedo,et al. Electrical relaxation in a glass-forming molten salt , 1974 .