Electrical conductivity and relaxation phenomena in Li2O•B2O3 based glass and glass-ceramic: A comprehensive and comparative analysis

被引:12
|
作者
Kumar, Sachin [1 ]
Kumari, Suman [1 ]
Kumar, Vibhor [2 ]
Dalal, Jasvir [1 ]
Kumar, Anand [1 ]
Ohlan, Anil [3 ]
机构
[1] Chaudhary Ranbir Singh Univ, Dept Phys, Jind 126102, India
[2] Rutgers State Univ, Sch Engn, Piscataway, NJ 08854 USA
[3] Maharshi Dayanand Univ, Dept Phys, Rohtak 124001, Haryana, India
关键词
Glass; Glass-ceramics; Electrical conductivity; Relaxation mechanism; Impedance spectroscopy; POLARON TUNNELING MODEL; IMPEDANCE SPECTROSCOPY; ELECTRODE MATERIALS; SOLID ELECTROLYTES; ION BATTERIES; TEMPERATURE; FREQUENCY; MODULUS; MECHANISM; CONSTANT;
D O I
10.1016/j.jpcs.2022.110911
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This work reports a detailed investigation on the electrical conductivity and dielectric relaxation phenomena in Li2O center dot B2O3 based glass and glass-ceramic materials. Measurements reveal that the electrical conductivity of glass-ceramic is lower than glass. This owes to occurrence of grain boundaries which impede the mobility of charge carriers in glass-ceramic as confirmed by FESEM micrographs. The frequency-dependent behavior of electrical conductivity, within the measured temperature range, is analysed using Jonscher's power law. It is found that the conductivity rises with an increase in temperature and the range of conductivity reveals the semiconducting behavior of the material. The ac conductivity mechanism of system is observed to follow the overlapping large polaron tunneling model. The conduction and relaxation mechanism studies are performed using electric modulus and impedance spectroscopy within the frequency and temperature ranges varied from 10(3) Hz to 10(7) Hz and 593 K-773 K, respectively. Analysis of the relaxation mechanism in both samples is performed employing Kohlrausch-William-Watts (KWW) model, which reveals that the charge carriers are following non-Debye type relaxation. To distinguish between the contribution of grain boundaries and grains in the relaxation mechanism, a combined analysis of complex electric module and impedance spectroscopy has been discussed.
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页数:11
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