用于光子应用的(1−x)TeO2-(x)ZnCl2光学玻璃的热分析和线性光学性质

I. Kabalci, Nese O. Korpe, R. Polat
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引用次数: 0

摘要

研究了二元TeO2-ZnCl2光学玻璃体系的热光学性质和线性光学性质,该体系含有不同的ZnCl2成分,从10%到40mol%不等。玻璃体系的制备是通过将TeO2和ZnCl2化学物质的混合物在铂坩埚中在850℃的空气中熔化60分钟来实现的。在实验中,通过差热分析(DTA)图确定了不同加热速率(B=10、20、30和40°C/min)下的玻璃化转变(Tg)、结晶(Tp)和熔化(Tm)温度等热特性。结合差热图,采用Ozawa方程和修正Kissinger方程确定了结晶活化能。热分析表明结晶活化能分别为487.6kJ/mol、215.8kJ/mol、392。当ZnCl2含量为10、20、30和40mol%时,分别为273.3kJ/mol和273.3kJ/mol。从300 ~ 800nm的吸收光谱中估计了玻璃样品的光学带隙(直接和间接)和乌尔巴赫能量。当ZnCl2含量从10 mol%增加到40 mol%时,直接带隙能从3.65 eV降低到3.35 eV,间接带隙能从3.59 eV降低到3.30 eV。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal analysis and linear optical properties of (1−x)TeO2-(x)ZnCl2 optical glasses for photonic applications
The investigation covers the thermal and linear optical properties of binary TeO2-ZnCl2 optical glass systems contain different ZnCl2 compositions ranging from 10 to 40mol%. Preparation of the glass systems were realized by melting the mixture of TeO2 and ZnCl2 chemicals in a platinum crucible at 850°C for 60 min in air. In the experiments, thermal analysis was performed to determine the thermal characteristics such as, glass transition (Tg), crystallization (Tp), and melting (Tm) temperatures for different heating rates (B=10, 20, 30 and 40 °C/min) by using the differential thermal analysis (DTA) plot. By considering the DTA plots, the crystallization activation energies were determined by using the Ozawa and modified Kissinger equations. Finally, thermal analysis show that the crystallization activation energies were 487.6kJ/mol, 215.8kJ/mol, 392.kJ/mol, and 273.3kJ/mol for the x=10, 20, 30, and 40mol% ZnCl2 contents, respectively. Optical band gaps (direct and indirect) and Urbach energies of the glass samples were estimated from the absorption spectra measured between 300 and 800nm. The direct band gap energies decrease from 3.65 eV to 3.35 eV, and indirect band gap energies also decrease from 3.59 eV to 3.30 eV by increasing the ZnCl2 content from 10 to 40 mol%, respectively.
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