MASTER CURVE FOR CRYSTALLIZATION OF SB70TE30AMORPHOUS ALLOYS

IF 0.1 Q4 PHYSICS, MULTIDISCIPLINARY
J. Rocca, M. A. Ureña, M. Fontana
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引用次数: 0

Abstract

One of the possible uses of chalcogenide glasses is their application in phase change memory devices. The operation of these non-volatile memories is based on the use of an alloy with chalcogenide elements as a sensitive material, taking advantage of the great contrast in electrical resistance between the amorphous and crystalline states. The Sb70Te30(atomic percentage) alloy stands out among the chalcogenide materials with these properties. On the other hand, the knowledge of the microscopic mechanisms of the amorphous alloys crystallization allows microstructural control to optimize properties. At this point, differential scanning calorimetry (DSC) has been widely used for the determination of the thermal stability of amorphous alloys. Previously we have started the study of the crystallization kinetics ofSb70Te30amorphous alloys. In this work, a procedure based on the so-called isokinetic hypothesis has been applied to carry out the kinetic analysis of the calorimetric data of continuous heating. In particular, the so-called master curve of the crystallization kinetics of this alloy is determined.
sb70te30非晶合金结晶主曲线
硫系玻璃的一个可能用途是它们在相变存储器件中的应用。这些非易失性存储器的操作是基于使用含硫族元素的合金作为敏感材料,利用非晶态和晶态之间电阻的巨大反差。Sb70Te30(原子百分数)合金在具有这些性能的硫系材料中脱颖而出。另一方面,对非晶合金结晶微观机制的了解,使微观结构控制能够优化性能。此时,差示扫描量热法(DSC)已被广泛应用于非晶合金热稳定性的测定。在此之前,我们已经开始了sb70te30非晶合金结晶动力学的研究。在这项工作中,基于所谓的等速假设的程序已被应用于对连续加热的量热数据进行动力学分析。特别是,确定了该合金结晶动力学的所谓主曲线。
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来源期刊
Anales AFA
Anales AFA PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.40
自引率
0.00%
发文量
43
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