Title of article :
Effect of MoO3 on electron paramagnetic resonance spectra, optical spectra and dc conductivity of vanadyl ion doped alkali molybdo-borate glasses
Author/Authors :
Agarwal، نويسنده , , A. and Khasa، نويسنده , , S. and Seth، نويسنده , , V.P. and Sanghi، نويسنده , , S. and Arora، نويسنده , , M.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Pages :
9
From page :
182
To page :
190
Abstract :
Alkali molybdo-borate glasses having composition xMoO3·(30 − x)M2O·70B2O3 and xMoO3·(70 − x)B2O3·30M2O (M = Li, Na, K) with 0 ⩽ x ⩽ 15 (mol%) doped with 2.0 mol% of V2O5 have been prepared in order to study the influence of MoO3 on electrical conductivity, electron paramagnetic resonance (EPR) and optical spectra. From EPR studies it is observed that V4+ ions in these samples exist as VO2+ ions in octahedral coordination with a tetragonal compression and belong to C4V symmetry. The tetragonal nature and octahedral symmetry of V4+O6 complex increase as well as decrease depending upon the composition of glasses with increase in MoO3 but 3dxy orbit of unpaired electron in the VO2+ ion expands in all the glasses. The decrease in optical band gap suggests that there is an increase in the concentration of non-bridging oxygen’s. From the study of optical transmission spectra it is observed that for all the glasses the degree of covalency of the σ-bonding decreases with increase in MoO3 content and the degree of covalency of the π-bonding also varies. These results based on optical spectroscopy are in agreement with EPR findings. It is found that dc conductivity decreases and activation energy increases with increase in MoO3:M2O (M = Li, Na, K) ratio in MoO3·M2O·B2O3 glasses, whereas the conductivity increases and activation energy decreases with increase in MoO3:B2O3 ratio in xMoO3·B2O3·M2O glasses, which is governed by the increase in nonbridging oxygen’s. The variation in theoretical optical basicity, Λth is also studied.
Keywords :
EPR , Ionic conduction , Optical properties , Vanadyl ion , Borate glasses
Journal title :
Journal of Molecular Structure
Serial Year :
2014
Journal title :
Journal of Molecular Structure
Record number :
1975554
Link To Document :
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