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Observation of phase separation in some SeTeSn chalcogenide glasses

机译:某些SeTeSn硫属化物玻璃的相分离观察

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摘要

Differential scanning calorimeter (DSC) and X-ray diffraction (XRD) techniques were employed here to investigate the glass transition behavior and crystallization kinetics of Se_(80-x) Te_(20)Sn_x (x=0.0, 2.5 and 5) alloys, which were prepared by the conventional melt quenching method. Two exothermic peaks have been observed in the DSC scans for the samples that contain Sn. Three crystalline phases (Se_(7.68)Te _(0.32), SnSe and SnTe) were classified after heat treating the Se _(77.5) Te~(20)Sn_(2.5) glass at temperature corresponding to the second crystallization peaks for 3 h. All the characteristic temperatures such as glass transition temperature (T _g), crystallization temperature (T_c) and crystallization peak temperatures (T_p) were found to depend on both the heating rate and the composition. This dependence has been used to deduce the activation energy of the glass transition (E_g), the activation energy of crystallization (E_c), the Avrami exponent (n), thermal stability and the fragility index (F_i).
机译:本文采用差示扫描量热仪(DSC)和X射线衍射(XRD)技术研究了Se_(80-x)Te_(20)Sn_x(x = 0.0、2.5和5)合金的玻璃化转变行为和结晶动力学,通过常规的熔融淬火方法制备。在DSC扫描中,对于含Sn的样品观察到两个放热峰。在对应于第二个结晶峰的温度下对Se _(77.5)Te〜(20)Sn_(2.5)玻璃进行3 h热处理后,将三个晶相(Se_(7.68)Te _(0.32),SnSe和SnTe)分类。 。发现所有特征温度,例如玻璃化转变温度(T_g),结晶温度(T_c)和结晶峰值温度(T_p)都取决于加热速率和组成。这种依赖性已经被用来推断玻璃化转变的活化能(E_g),结晶的活化能(E_c),Avrami指数(n),热稳定性和脆性指数(F_i)。

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