首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Crystallizations, Solid-State Phase Transformations and Dissolution Behavior Explained by Dispersive Kinetic Models Based on a Maxwell_Boltzmann Distribution of Activation Energies: Theory, Applications, and Practical Limitations
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Crystallizations, Solid-State Phase Transformations and Dissolution Behavior Explained by Dispersive Kinetic Models Based on a Maxwell_Boltzmann Distribution of Activation Energies: Theory, Applications, and Practical Limitations

机译:基于活化能的Maxwell_Boltzmann分布的色散动力学模型解释的结晶,固态相变和溶解行为:理论,应用和实际限制

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摘要

The potential applications of dispersive kinetic models range from solid-state conversions to gas-phase chemical physics and to microbiology. Here, the derivation and application of two such models, for use in solid-state applications, is presented. The models are based on the concept of a Maxwell_Boltzmann distribution of activation energies. The ability of the models to fit/explain an assortment of asymmetric, sigmoidal conversionversus-time transients presented in the recent literature, as well as to provide physicochemical interpretations of the kinetics via the two fit parameters, a and _, makes them a powerful tool for understanding nucleation/ denucleation rate-limited processes that are involved in many phase transformations, dissolutions and crystallizations
机译:色散动力学模型的潜在应用范围从固态转换到气相化学物理学再到微生物学。在此,介绍了在固态应用中使用的两个此类模型的推导和应用。这些模型基于活化能的Maxwell_Boltzmann分布的概念。模型能够拟合/解释最近文献中提出的各种不对称,S形转换相对于时间瞬变的能力,并能够通过两个拟合参数a和_提供动力学的物理化学解释,这使其成为功能强大的工具用于了解成核/去核速率受限的过程,这些过程涉及许多相变,溶解和结晶

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