首页> 外文期刊>Solid state sciences >Effects of mixed glass former on AC conductivity and dielectric properties of 70[xTeO(2)+(1-x)B2O3]+15Na(2)O+15K(2)O glass system
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Effects of mixed glass former on AC conductivity and dielectric properties of 70[xTeO(2)+(1-x)B2O3]+15Na(2)O+15K(2)O glass system

机译:混合玻璃以前对70 [Xteo(2)+(1-x)B2O3] + 15NA(2)O + 15K(2)O玻璃系统的助剂电导率和介电性能的影响

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摘要

Mixed glass former of composition 70[xTeO(2)+(1-x)B2O3]+15Na(2)O+15K(2)O where x = 0-0.7 mol% have been prepared by melt quenching method to investigate their structural, AC conductivity, and dielectric properties. The variation of conductivity (sigma') with TeO2 showed a non-linear behaviour, where decrease to a minimum value at x = 0.4 mol% before increasing for x > 0.4 mol%. The minimum is suggested to be due to the low migration of Na+ and K+ ions caused by the mixed glass former effect (MGFE). Meanwhile, dielectric constant (epsilon') showed a slight increase for x <= 0.4 mol% followed by a large increase for x >= 0.5 mol% TeO2. The large increase in dielectric constant (epsilon') for x >= 0.5 mol% is suggested to be due to the presence of some crystalline phase within the amorphous matrix. Structural analysis of the present glass system reveals N-4 reached minima at x = 0.2 mol% and 0.4 mol% with addition of TeO2 which attributed to the structural changes due to the conversion of BO4 to BO3 units. Glass transition temperature, T-g exhibited a non-linear increase for x <= 0.5 mol% followed by a large increase at x > 0.5 mol%. The conduction mechanism at low frequency region was found to be Inverse Overlapping Large Polamn Tunnelling (Inverse - OLPT) for x <= 0.5 mol%, while the mechanism transformed to the OLPT model for x = 0.7 mol%. The electric modulus of the present glass system showed an asymmetric peak of M', that reflected a non-Debye type relaxation.
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