界面反应的热力学和动力学方面

H. Schmalzried
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引用次数: 9

摘要

在导论部分,系统地指出了可静止或可运动的平衡和非平衡界面。界面的基本热力学特征,特别是关于其电结构,将在第二节中简要讨论。主要的重点放在静息(静止)和运动界面的动力学在第三节。指出了离子晶体在电化学上与电极的相似之处。讨论了用于解释非均相固体反应界面动力学的特殊模型,例如密排氧阴离子亚晶格中的阳离子重构重排。点缺陷进出界面的通量和界面区域的缺陷弛豫过程也对非均相反应的动力学有决定性的影响。第四节讨论相变中的移动边界,相变在某种意义上是最简单的非均相固相反应。硫属银可作为实验实例。最后,在第五部分从宏观(现象学)和亚微观(原子)的角度对运动界面的形态稳定性进行了实验和理论研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermodynamic and kinetic aspects of interface reactions

In the introductory section the systematics of equilibrium and non-equilibrium interfaces which can be stationary or moving are pointed out. The basic thermodynamic features of interfaces, particularly with respect to its electrical structure, is briefly treated in section II. The main emphasis is laid on the kinetics of resting (stationary) and of moving interfaces in section III. The similarities with electrodes in electrochemistry are pointed out for ionic crystals. Special models are discussed which are constructed to explain the interface kinetics in heterogeneous solid-state reactions, e.g. cation reconstructive rearrangement in close-packed oxygen anion sublattices. Point defect fluxes to and from the interface and defect relaxation processes in the interface region may also influence the kinetics of the heterogeneous reactions decisively. Section IV is devoted to the discussion of the moving boundary in phase transformation, which in a sense is the most simple heterogeneous solid-state reaction. Silver chalcogenides serve as experimental examples. Finally, the morphological stability of moving interfaces is studied experimentally and theoretically on a (phenomenological) macroscopic and a submicroscopic (atomistic) scale in section V.

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