Lithium zinc phosphate glasses of the composition xLi2O-(40 - x)ZnO-60P2O5, (0 \u3c x \u3c 40), in mol%, were prepared by melting and analyzed by different thermal analysis (DTA), Raman and impedance spectroscopy in the frequency range from 0.01 Hz to 4 MHz and temperature range from 303 to 473 K. The systematic change in the variety of properties at 20 mol% Li2O is explained by changes in the nature of the oxygen bonds in glass network. The Raman spectra predominantly show the metaphosphate structure with barely detectable pyrophosphate units for all glasses in the series. However, replacing ZnO with Li2O in these glasses leads to the compositional dependent changes. This dependence is explained by different structural cross-linking of pho...
Electrical conductivity of Li+ ion conducting borophosphate glass system with the general formula xL...
Lithium silicophosphate glasses have been prepared by a sol-gel route over a wide range of compositi...
The frequency and temperature dependences of the dielectric constant and the electrical conductivity...
The phosphate glasses, with composition (60-x)P2O5-25ZnO-(15+x)Li2O where 0.0 ≤ x ≤ 5.0 mol% are pre...
The electrical conductivity of Li+ ion conducting lead zinc phosphate glasses have been carried out ...
Electrical conductivity of 50Li₂O-xTiO₂-(50-x)P₂O5 glasses has been studied with an increase of the ...
Li+ ion transport studies have been carried in Li 2O-Li2SO4-ZnO-B2O3 glass system. Electrical conduc...
The effect of Li2SO4 on the electrical conductivity of Li2O- B2O3- P2O5 glass system prepared by mel...
Phosphate glasses with various compositions of lithium oxide and indium oxide were synthesized by me...
The new glassesof glass system x Li 2 O-50 V 2 O 5 -(50-x) P 2 O 5 were prepared by using convention...
Ion conducting glasses in xLiCl-20Li(2)O-(80-x) 0.80P(2)O(5)-0.20MoO(3)] glass system have been prep...
International audienceAmorphous analogs of lithium–iron–phosphates (LFP) with olivine-like local ord...
The electrical properties of (40−x)ZnO-xFe2O3-60P2O5 (x = 10, 20, 30 mol%) glasses were measured by ...
Homogeneous (LiCl) x (P2O5)1 − x glasses were synthesised using a melt-quenching method for x = 0.1–...
Modeling the transport properties of glasses, and ionic conductivity in particular, has been a recur...
Electrical conductivity of Li+ ion conducting borophosphate glass system with the general formula xL...
Lithium silicophosphate glasses have been prepared by a sol-gel route over a wide range of compositi...
The frequency and temperature dependences of the dielectric constant and the electrical conductivity...
The phosphate glasses, with composition (60-x)P2O5-25ZnO-(15+x)Li2O where 0.0 ≤ x ≤ 5.0 mol% are pre...
The electrical conductivity of Li+ ion conducting lead zinc phosphate glasses have been carried out ...
Electrical conductivity of 50Li₂O-xTiO₂-(50-x)P₂O5 glasses has been studied with an increase of the ...
Li+ ion transport studies have been carried in Li 2O-Li2SO4-ZnO-B2O3 glass system. Electrical conduc...
The effect of Li2SO4 on the electrical conductivity of Li2O- B2O3- P2O5 glass system prepared by mel...
Phosphate glasses with various compositions of lithium oxide and indium oxide were synthesized by me...
The new glassesof glass system x Li 2 O-50 V 2 O 5 -(50-x) P 2 O 5 were prepared by using convention...
Ion conducting glasses in xLiCl-20Li(2)O-(80-x) 0.80P(2)O(5)-0.20MoO(3)] glass system have been prep...
International audienceAmorphous analogs of lithium–iron–phosphates (LFP) with olivine-like local ord...
The electrical properties of (40−x)ZnO-xFe2O3-60P2O5 (x = 10, 20, 30 mol%) glasses were measured by ...
Homogeneous (LiCl) x (P2O5)1 − x glasses were synthesised using a melt-quenching method for x = 0.1–...
Modeling the transport properties of glasses, and ionic conductivity in particular, has been a recur...
Electrical conductivity of Li+ ion conducting borophosphate glass system with the general formula xL...
Lithium silicophosphate glasses have been prepared by a sol-gel route over a wide range of compositi...
The frequency and temperature dependences of the dielectric constant and the electrical conductivity...