4.7 Article

Structural, optical, dielectric and thermal properties of molybdenum tellurite and borotellurite glasses

期刊

JOURNAL OF NON-CRYSTALLINE SOLIDS
卷 444, 期 -, 页码 1-10

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jnoncrysol.2016.04.033

关键词

Molybdenum tellurite and borotellurite glasses; Short-range order; Raman spectroscopy; B-11 MAS-NMR; Tellurium coordination; Boron coordination; Structural relaxation

资金

  1. Inter-university Accelerator Center, New Delhi [UFR-53304]
  2. UGC-DAE - Consortium for Scientific Research, Mumbai, India [CRS-M-215]

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Molybdenum tellurite and borotellurite glasses were prepared and structure-property correlations were carried out by density, X-ray diffraction, dielectric measurements, differential scanning calorimetry, UV-visible, infrared, Raman and B-11 Magic Angle Spinning Nuclear Magnetic Resonance studies. The short-range structure of molybdenum tellurite glasses consists of TeO4, TeO3 and MoO6 structural units. Increase in MoO3 concentration from 20 to 50 mol% decreases the Te-O coordination from 3.48 to 326 and lowers the glass transition temperature (T-g) due to increase in the concentration of weaker Mo-O bonds at the expense of stronger Te-O bonds. Refractive index of molybdenum tellurite glasses increases while the dielectric constant decreases with increase in MoO3 concentration. The addition of B2O3 in the tellurite network enhances Tg and suppresses the tendency towards crystallization. The effects of 8203 are similar to that of MoO3 and it produces structural transformations: TeO4 -> TeO3 and BO4 -> BO3. The addition of B2O3 does not significantly modify the optical properties but the dielectric constant decreases by a small amount. Glass sample of 20MoO(3)-80TeO(2) was annealed at 280 degrees C for similar to 500 h and changes in its density and thermal properties were studied; it was found that the annealing increases the glass density slightly, but it causes a drastic enhancement of Tg by 10 degrees C, due to the structural rearrangements in the intermediate range order without effecting Te-O and Mo-O speciation. (C) 2016 Elsevier B.V. All rights reserved.

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