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首页> 外文期刊>Physica, B. Condensed Matter >Thermal characterization of Se85 -_xSb_(15)Sn _x(10 ≤ x 13) chalcogenide glasses
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Thermal characterization of Se85 -_xSb_(15)Sn _x(10 ≤ x 13) chalcogenide glasses

机译:Se85 -_xSb_(15)Sn _x(10≤x <13)硫属化物玻璃的热表征

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Results of crystallization kinetics, viscosity, specific heat, thermal stability, and glass forming ability of Se_(85) Sb_(15)Sn _x (x=10, 11, 12.5, and 13) chalcogenide glasses, using differential scanning calorimeter (DSC), under non-isothermal condition have been reported and discussed. The variation of the peak temperature of crystallization T with the heating rate /1 has been used to investigate the growth kinetics using Kissinger, Takhor, and Augis-Bennet models. The activation energy of crystallization E has been found to increase with Sn content and the crystal growth occurs in one dimension. The increasing trend of E is interpreted in terms of enhancement of the degree of cross-linking due to the formation of 5n5e412 structural units of energies higher than that of Se-Se and Se-Sb bond energies. The viscosity against lIT curves has also been drawn and indicated that the atoms of ternary Se-Sb-Sn glasses required more energy, with the addition of Sn, to complete the transformation from amorphous to crystalline stata The demand for thermal stability has been ensured through the calculations of the enthalpy released AI-I during the crystallization process and S-parameter, while the obtained values of the reduced glass transition temperature Trg and 1-lurby number HR have been used to estimate the glass forming ability (GFA). Results reveal that, both thermal stability and GFA enhanced with increasing Sn content and the studied samples were prepared from strong glass-forming liquids. The obtained values for the specific heat difference ACM, between the equilibrium liquid and the glass, have been found to decrease with increasing Sn content and are in support of the results of thermal stability and GFA.
机译:Se_(85)Sb_(15)Sn _x(x = 10、11、12.5和13)硫族化物玻璃的结晶动力学,粘度,比热,热稳定性和玻璃形成能力的结果,使用差示扫描量热仪(DSC) ,在非等温条件下,已有报道和讨论。结晶温度T的峰值温度随加热速率/ 1的变化已被用于使用Kissinger,Takhor和Augis-Bennet模型研究生长动力学。已经发现结晶E的活化能随着Sn含量的增加而增加,并且晶体生长在一维中发生。 E的增加趋势可以解释为,由于形成的5n5e412结构单元的能量高于Se-Se和Se-Sb键能,从而增强了交联度。还绘制了相对于lIT曲线的粘度,表明三元Se-Sb-Sn玻璃的原子需要更多的能量(添加Sn才能完成从非晶态到结晶态的转变),通过以下方法确保了对热稳定性的要求:计算结晶过程中的焓释放AI-1和S参数,同时将获得的降低的玻璃化转变温度Trg和1倍数HR的值用于估计玻璃形成能力(GFA)。结果表明,热稳定性和GFA均随Sn含量的增加而增强,并且所研究的样品均由强玻璃形成液制备。已经发现,在平衡液体和玻璃之间的比热差ACM的获得的值随锡含量的增加而降低,并支持热稳定性和GFA的结果。

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