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Original Articles

Anomalous Dielectric Behaviour in Melt Quenched Lithium Borate Glasses

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Pages 1-16 | Received 15 Feb 1999, Published online: 27 Sep 2006

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B. HARIHARA VENKATARAMAN & K.B.R. VARMA. (2006) Structural, Dielectric, Pyroelectric and Ferroelectric Properties of Glass Nano Composite: Lithium Borate-Strontium Bismuth Vanadium Niobate. Ferroelectrics Letters Section 33:3-4, pages 39-56.
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Articles from other publishers (15)

Chirag Porwal, Akshay Gaur, Vishal Singh Chauhan & Rahul Vaish. (2023) Photocatalytic dye degradation using lithium borate-bismuth tungstate glass-ceramics. Ceramics International 49:20, pages 32808-32815.
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Ruihua Deng, Jianming Tao, Wenhao Zhong, Lang Wen, Yanmin Yang, Jiaxin Li & Yingbin Lin. (2023) Tri-functionalized Li2B4O7 coated LiNi0.5Co0.2Mn0.3O2 for boosted performance lithium-ion batteries. Journal of Alloys and Compounds 940, pages 168767.
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Mohini Boora, Somil Malik, Vibhor Kumar, Manju Bala, Susheel Arora, Sunil Rohilla, Anand Kumar & Jasvir Dalal. (2021) Investigation of structural and impedance spectroscopic properties of borate glasses with high Li+ concentration. Solid State Ionics 368, pages 115704.
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D. D. Ramteke & R. S. Gedam. (2015) Insight of conduction mechanism of Gd3+-containing lithium borate glasses. Ionics 21:7, pages 1931-1935.
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G. Paramesh, Rahul Vaish & K.B.R. Varma. (2011) Electrical transport properties of 0.5Li2O–0.5M2O–2B2O3 (M=Li, Na and K) glasses. Journal of Non-Crystalline Solids 357:5, pages 1479-1484.
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M. Niyaz Ahamad & K.B.R. Varma. (2010) Dielectric properties of (100−x)Li2B4O7–x(Ba5Li2Ti2Nb8O30) glasses and glass nanocrystal composites. Materials Science and Engineering: B 167:3, pages 193-201.
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I. Kashif, Samy A. Rahman, A.A. Soliman, E.M. Ibrahim, E.K. Abdel-Khalek, A.G. Mostafa & A.M. Sanad. (2009) Effect of alkali content on AC conductivity of borate glasses containing two transition metals. Physica B: Condensed Matter 404:21, pages 3842-3849.
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I. Kashif, Samy A. Rahman, A.G. Mostafa, E.M. Ibrahim & A.M. Sanad. (2008) Structural analysis and physical properties of iron–molybdenum lithium-borate glasses. Journal of Alloys and Compounds 450:1-2, pages 352-358.
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S. Simon & D. Eniu. (2007) Spectroscopic characterisation of local structure in Y2O3–B2O3–Bi2O3 glasses doped with gadolinium. Journal of Materials Science 42:15, pages 5949-5953.
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V. SIMON & D. ENIU. (2011) YTTRIUM EFFECT ON LOCAL STRUCTURE OF BISMUTH-BORATE GLASSES. Modern Physics Letters B 21:09, pages 567-571.
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B. Harihara Venkataraman & K.B.R. Varma. (2006) Electrical properties of SrBi2(Nb0.7V0.3)2O9−δ in the SrO–Bi2O3–0.7Nb2O5–0.3V2O5–Li2B4O7 glass system. Journal of Non-Crystalline Solids 352:6-7, pages 695-699.
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N Syam Prasad & K.B.R Varma. (2002) Nanocrystallization of SrBi2Nb2O9 from glasses in the system Li2B4O7SrOBi2O3Nb2O5. Materials Science and Engineering: B 90:3, pages 246-253.
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G. Senthil Murugan, K. B. R. Varma, Yoshihiro Takahashi & Takayuki Komatsu. (2001) Nonlinear-optic and ferroelectric behavior of lithium borate–strontium bismuth tantalate glass–ceramic composite. Applied Physics Letters 78:25, pages 4019-4021.
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G. Senthil Murugan & K.B.R. Varma. (2001) Dielectric, linear and non-linear optical properties of lithium borate–bismuth tungstate glasses and glass-ceramics. Journal of Non-Crystalline Solids 279:1, pages 1-13.
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G.Senthil Murugan & K.B.R. Varma. (1999) Structural, dielectric and optical properties of lithium borate–bismuth tungstate glass-ceramics. Materials Research Bulletin 34:14-15, pages 2201-2213.
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