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Tracer Diffusion and Ionic Conduction in Standard Silica Glasses

机译:标准硅胶中的示踪剂扩散和离子传导

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The tracer diffusivities of ~(22)Na and ~(45)Ca in two high-quality standard silica glasses have been measured in the temperature range between 473 and 783 K. The temperature dependences of the tracer diffusion coefficients in both glasses follow Arrhenius laws. The diffusion of ~(22)Na is six to seven orders of magnitude faster than the diffusion of ~(45)Ca. The ionic conductivity was determined by impedance spectroscopy and the conductivity diffusion coefficient D_σ was deduced from the dc conductivity via the Nernst-Einstein relation. The temperature dependences of D_σ for both glasses follow also Arrhenius functions. The activation parameters and pre-exponential factors for tracer diffusion and for conductivity diffusion were determined. The activation enthalpy of ~(22)Na diffusion is almost equal to the activation enthalpy of the dc conductivity. We conclude that the conductivity of standard glasses is due to the motion of Na ions. The diffusivities of ~(22)Na and ~(45)Ca in soda-lime glasses increase with increasing Na_2O content.
机译:在两个高质量标准硅胶中的〜(22)Na和〜(45)Ca的示踪剂扩散性已经在473和783k的温度范围内测量。两个眼镜的示踪剂扩散系数的温度依赖性关注Arrhenius法。 〜(22)NA的扩散比〜(45)CA的扩散快六到七个数量级。通过阻抗光谱法测定离子电导率,并且通过NERNST-Einstein关系从DC电导率推导出导电漫射系数Dα。两个眼镜的D_σ的温度依赖性也遵循Arrhenius函数。确定用于示踪剂扩散和用于电导率扩散的激活参数和预指数因素。 〜(22)Na扩散的激活焓几乎等于直流电导率的激活焓。我们得出结论,标准眼镜的电导率是由于Na离子的运动。随着Na_2O含量的增加,钠钙玻璃中〜(22)Na和〜(45)Ca的扩散性增加。

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