Electrical response changes due to the incorporation of alkaline-earth oxides in the vanadium-molybdenum tellurite glassy matrix have been studied. The results are explained by analyzing the electric formalisms representations. A non-straightforward relationship to the modifier oxide ionic radius was found and the results suggest poor charge carrier interactions even at high alkaline-earth concentrations. The electrical behavior of the studied materials gives strong evidence that alkaline-earth modified tellurite glasses are poor candidates to become good ionic glassy conductors.Fil: Terny, Cintia Soledad. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Bahía Blanca. Instituto de Química d...
In this paperwe present the study of the glassy systems of formula: xMgO(1−x)(0.5V2O5·0.5MoO3)2TeO2,...
The silver ion conducting boro tellurite glasses have been prepared by melt quenching technique. T...
We have reported the ionic relaxation for different compositions of xAg2O-(1-x)TeO2 conducting glass...
In this work, we suggest an explanation of the electrical conductivity behavior of tellurite glassy ...
In this work, the electrical behavior and structural features of the system xCu2O (1-x) (0.5V2O5·0.5...
Glasses of composition 0.8 [xBaO.(1-x)MgO]. 0.2TM.2TeO2 with TM: MoO3, WO3, V2O5 or Nb2O5 (x= mol co...
In this paper we present the study of the glassy systems of formula: xMgO(1 − x)(0.5V 2 O 5 ·0.5MoO ...
Transition metal containing glasses have unique electrical properties and are therefore often used f...
The authors have reported the electrical conductivity and the conductivity relaxation in mixed alkal...
Glasses of the composition 30(Li,Na)2O,xB203,(70-x) Te02 (20 ≤ x ≤ 50) have bee...
The aim of the present paper is to give structural information in order to set a correlation between...
The effect of the partial replacement of lithium oxide by silver oxide in a glassy vanadium-molybden...
The electrodes of secondary batteries degrade during consecutive intercalation cycles, thus reducing...
The electrodes of secondary batteries degrade during consecutive intercalation cycles, thus reducing...
The electrical conductivity and conductivity relaxation of xNa2O-(100-x)TeO2 glasses have been inves...
In this paperwe present the study of the glassy systems of formula: xMgO(1−x)(0.5V2O5·0.5MoO3)2TeO2,...
The silver ion conducting boro tellurite glasses have been prepared by melt quenching technique. T...
We have reported the ionic relaxation for different compositions of xAg2O-(1-x)TeO2 conducting glass...
In this work, we suggest an explanation of the electrical conductivity behavior of tellurite glassy ...
In this work, the electrical behavior and structural features of the system xCu2O (1-x) (0.5V2O5·0.5...
Glasses of composition 0.8 [xBaO.(1-x)MgO]. 0.2TM.2TeO2 with TM: MoO3, WO3, V2O5 or Nb2O5 (x= mol co...
In this paper we present the study of the glassy systems of formula: xMgO(1 − x)(0.5V 2 O 5 ·0.5MoO ...
Transition metal containing glasses have unique electrical properties and are therefore often used f...
The authors have reported the electrical conductivity and the conductivity relaxation in mixed alkal...
Glasses of the composition 30(Li,Na)2O,xB203,(70-x) Te02 (20 ≤ x ≤ 50) have bee...
The aim of the present paper is to give structural information in order to set a correlation between...
The effect of the partial replacement of lithium oxide by silver oxide in a glassy vanadium-molybden...
The electrodes of secondary batteries degrade during consecutive intercalation cycles, thus reducing...
The electrodes of secondary batteries degrade during consecutive intercalation cycles, thus reducing...
The electrical conductivity and conductivity relaxation of xNa2O-(100-x)TeO2 glasses have been inves...
In this paperwe present the study of the glassy systems of formula: xMgO(1−x)(0.5V2O5·0.5MoO3)2TeO2,...
The silver ion conducting boro tellurite glasses have been prepared by melt quenching technique. T...
We have reported the ionic relaxation for different compositions of xAg2O-(1-x)TeO2 conducting glass...