The electrical and dielectric properties of the xNa2O · (100 - x) · [28.3PbO · 28.7Fe2O3 · 43.0P2O5] (0 ≤ x ≤ 30) glasses were measured by impedance spectroscopy in the frequency range from 0.01 Hz to 3 MHz and the temperature range from 303 to 473 K. The conductivity for glasses containing ≤15 mol% Na2O is predominantly electronic and is controlled by electron hopping between Fe(II) and Fe(III) ions. In these glasses the sodium ions have such a low mobility, caused by ion-polaron interaction, that they make no detectable contribution to the total conductivity. For Na2O contents \u3e15 mol%, the conductivity increases significantly due to an increase in the sodium ion mobility. The increasing concentration of sodium ions, increases the degr...
A new study has been made of the well-known sodium borosilicate glass system to improve the overall ...
In glasses, a sodium ion (Na+) is a significant mobile cation that takes up a dual role, that is, as...
The mixed glass former effect (MGFE) is defined as a nonlinear and nonadditive change in the ionic c...
The electrical properties for three series of glasses: xNa2O-(40−x)Al2O3-60P2O5, (20less-than-or-equ...
In the present study, B2O3 glasses doped with Na2O and Fe2O3 was prepared via melt quenching method....
Electrical transport in mixed ion-polaron glasses has been investigated in four series of glasses co...
Lead silicate glasses containing different amounts of Na2O and K2O along with BaO were prepared by ...
Conductivity measurements have been made on x V O-2(5) - (100-x) 0.5 Na2O + 0.5 B2O3] (where 10 a pa...
Abstract. Na+ ion conductivity has been studied in SnO×NaPO3 glasses, which have been prepared over ...
The electrical conductivity of XNa2O·(100−X)GeO2 glasses where X is 0.19 and 27.5 mol%, was studied ...
Glasses of the composition 30(Li,Na)2O,xB203,(70-x) Te02 (20 ≤ x ≤ 50) have bee...
The electrical properties of (40−x)ZnO-xFe2O3-60P2O5 (x = 10, 20, 30 mol%) glasses were measured by ...
The electrical and dielectric properties of 10ZnO-30Fe2O3-60P2O5 (mol%) glasses, melted at different...
Na<SUP>+</SUP> ion conductivity has been studied in SnO·NaPO<SUB>3</SUB> glasses, which have been pr...
The effect of sodium ⇔silver exchange on the electrical properties of glasses in the systems NaO-BO-...
A new study has been made of the well-known sodium borosilicate glass system to improve the overall ...
In glasses, a sodium ion (Na+) is a significant mobile cation that takes up a dual role, that is, as...
The mixed glass former effect (MGFE) is defined as a nonlinear and nonadditive change in the ionic c...
The electrical properties for three series of glasses: xNa2O-(40−x)Al2O3-60P2O5, (20less-than-or-equ...
In the present study, B2O3 glasses doped with Na2O and Fe2O3 was prepared via melt quenching method....
Electrical transport in mixed ion-polaron glasses has been investigated in four series of glasses co...
Lead silicate glasses containing different amounts of Na2O and K2O along with BaO were prepared by ...
Conductivity measurements have been made on x V O-2(5) - (100-x) 0.5 Na2O + 0.5 B2O3] (where 10 a pa...
Abstract. Na+ ion conductivity has been studied in SnO×NaPO3 glasses, which have been prepared over ...
The electrical conductivity of XNa2O·(100−X)GeO2 glasses where X is 0.19 and 27.5 mol%, was studied ...
Glasses of the composition 30(Li,Na)2O,xB203,(70-x) Te02 (20 ≤ x ≤ 50) have bee...
The electrical properties of (40−x)ZnO-xFe2O3-60P2O5 (x = 10, 20, 30 mol%) glasses were measured by ...
The electrical and dielectric properties of 10ZnO-30Fe2O3-60P2O5 (mol%) glasses, melted at different...
Na<SUP>+</SUP> ion conductivity has been studied in SnO·NaPO<SUB>3</SUB> glasses, which have been pr...
The effect of sodium ⇔silver exchange on the electrical properties of glasses in the systems NaO-BO-...
A new study has been made of the well-known sodium borosilicate glass system to improve the overall ...
In glasses, a sodium ion (Na+) is a significant mobile cation that takes up a dual role, that is, as...
The mixed glass former effect (MGFE) is defined as a nonlinear and nonadditive change in the ionic c...