Rim Y H, Lee B S, Choi H W, Cho J H, Yang Y S
School of Liberal Arts, Semyung University, Chechon, Chungbuk 390-711, Korea.
J Phys Chem B. 2006 Apr 20;110(15):8094-9. doi: 10.1021/jp060415s.
The frequency-dependent electrical data of the bismuth germanate silicate (BGSO) glasses have been discussed in the framework of the electric modulus representation and the power-law conductivity. The activation energies of the mean electric relaxation time and the direct current (dc) conductivity obtained by the complex modulus analysis show that the BGSO glasses satisfy the Barton, Nakajima, and Namikawa (BNN) relation. The proper relation between the exponent of the power-law conductivity and the stretched exponential of the modulus representation is shown. The temperature- and frequency-dependent characteristics of non-Debye behavior are discussed. The scaling properties of both the modulus M*(omega) and the alternating current (ac) conductivity sigma(omega) are examined.
在电模量表示和幂律电导率的框架内,对锗酸铋硅酸盐(BGSO)玻璃的频率相关电学数据进行了讨论。通过复模量分析得到的平均电弛豫时间和直流电导率的活化能表明,BGSO玻璃满足巴顿、中岛和并川(BNN)关系。给出了幂律电导率指数与模量表示的拉伸指数之间的适当关系。讨论了非德拜行为的温度和频率依赖性特征。研究了模量M*(ω)和交流电导率σ(ω)的标度性质。