首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Kissinger method applied to the crystallization of glass-forming liquids: Regimes revealed by ultra-fast-heating calorimetry
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Kissinger method applied to the crystallization of glass-forming liquids: Regimes revealed by ultra-fast-heating calorimetry

机译:基辛格方法应用于玻璃形成液的结晶:超快热量热法揭示的体系

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Numerical simulation of DSC traces is used to study the validity and limitations of the Kissinger method for determining the temperature dependence of the crystal-growth rate on continuous heating of glasses from the glass transition to the melting temperature. A particular interest is to use the wide range of heating rates accessible with ultra-fast DSC to study systems such as the chalcogenide Ge2Sb2Te5 for which fast crystallization is of practical interest in phase-change memory. Kissinger plots are found to show three regimes: (i) at low heating rates the plot is straight, (ii) at medium heating rates the plot is curved as expected from the liquid fragility, and (iii) at the highest heating rates the crystallization rate is thermodynamically limited, and the plot has curvature of the opposite sign. The relative importance of these regimes is identified for different glass-forming systems, considered in terms of the liquid fragility and the reduced glass-transition temperature. The extraction of quantitative information on fundamental crystallization kinetics from Kissinger plots is discussed. (C) 2014 Elsevier B.V. All rights reserved.
机译:DSC迹线的数值模拟用于研究Kissinger方法的有效性和局限性,该方法用于确定从玻璃化转变温度到熔融温度的连续玻璃加热过程中晶体生长速率的温度依赖性。特别感兴趣的是使用超快DSC可获得的宽范围的加热速率来研究诸如硫族化物Ge2Sb2Te5之类的系统,对于该系统而言,快速结晶在相变存储中具有实际意义。基辛格图显示出三种状态:(i)在低加热速率下,曲线是笔直的;(ii)在中等加热速率下,曲线是液体脆性所预期的弯曲的曲线;(iii)在最高加热速率下,结晶度速率受热力学限制,曲线具有相反符号的曲率。从液体脆性和降低的玻璃化转变温度的角度考虑,对于不同的玻璃形成系统,确定了这些方案的相对重要性。讨论了从基辛格图中提取有关基本结晶动力学的定量信息的方法。 (C)2014 Elsevier B.V.保留所有权利。

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