Thin film compound phase formation sequence: An effective heat of formation model

R. Pretorius, T.K. Marais, C.C. Theron
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引用次数: 113

Abstract

An effective heat of formation (EHF) model for predicting compound phase formation sequence is described. The EHF model defines an effective heat of formation ΔH′, which is concentration-dependent. By choosing the effective concentration of the interacting species at the growth interface to be that of the liquidus minimum, the model correctly predicts first phase formation during formation of silicides, germanides, aluminides and other metal-metal binary systems. The ability to predict phase formation sequence and phase decomposition is illustrated for some silicide and aluminide systems. The EHF model is also used to describe phase formation in lateral and bulk diffusion couples and for the interpretation of the effects of impurities and diffusion barriers on phase formation. It is also shown how the EHF model can be applied to laser and ion-beam induced phase formation and to the formation of amorphous and metastable phases. A compilation of recommended heats of formation for many silicide, germanide, aluminide and other metal-metal binary systems is given. In cases where experimental heats of formation were not available or if they were suspected of being unreliable, use was made of calculated values according to Miedema's model.

薄膜复合相形成序列:一种有效的形成热模型
介绍了一种预测复合相形成顺序的有效生成热模型。EHF模型定义了有效地层热ΔH ',它与浓度有关。通过选择生长界面处相互作用物质的有效浓度为液相线的最小值,该模型正确地预测了硅化物、锗化物、铝化物和其他金属-金属二元体系形成过程中的第一相形成。对某些硅化物和铝化物体系的相形成顺序和相分解进行了预测。EHF模型也用于描述横向和体扩散对中的相形成,并用于解释杂质和扩散障碍对相形成的影响。本文还展示了EHF模型如何应用于激光和离子束诱导相的形成以及非晶相和亚稳相的形成。给出了许多硅化物、锗化物、铝化物和其他金属-金属二元体系的推荐生成热汇编。在无法获得实验生成热或怀疑它们不可靠的情况下,根据米德马的模型使用计算值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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