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首页> 外文期刊>Solid state ionics >THE SUBMICROSCOPIC STRUCTURE OF REACTION FRONTS IN SOLID-SOLID REACTIONS AND ITS CORRELATION WITH REACTION MECHANISM AND KINETICS
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THE SUBMICROSCOPIC STRUCTURE OF REACTION FRONTS IN SOLID-SOLID REACTIONS AND ITS CORRELATION WITH REACTION MECHANISM AND KINETICS

机译:固-固反应中反应前沿的亚微观结构及其与反应机理和动力学的关系

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摘要

Experimental investigations of the atomic structure of topotaxial solid-solid reaction fronts were performed. XRD, TEM, SAED, EDS, RBS and specifically cross-sectional high-resolution electron microscopy (HRTEM) were applied to solid-solid reaction interfaces of a number of topotaxial model systems. The reaction kinetics of a silicide-forming reaction was shown to depend on the orientation of the silicide NiSi2. HRTEM revealed a corresponding difference in the atomic structure of the reaction front. The reaction mechanism of spinel-forming reactions was found to be determined by the spinel/oxide lattice misfit which at the moving reaction front has to be steadily accommodated. Sign and degree of the lattice misfit at the reaction front were systematically varied in the experiments by studying a series of different spinels, viz. Mg2TiO4, MgFe2O4, MgAl2O4, MgCr2O4 and MgIn2O4, revealing interfacial dislocations of different types. Respective results are discussed in terms of a model featuring the interplay between kinetic reaction barriers, the atomic mechanism of the solid state reaction and the properties of the interfacial defects (ledges, dislocations) persisting at the moving reaction front. [References: 37]
机译:进行了光轴固-固反应前沿原子结构的实验研究。 XRD,TEM,SAED,EDS,RBS和特别是截面高分辨率电子显微镜(HRTEM)被应用于许多光轴模型系统的固-固反应界面。硅化物形成反应的反应动力学显示出取决于硅化物NiSi 2的取向。 HRTEM揭示了反应前沿原子结构的相应差异。发现尖晶石形成反应的反应机理是由尖晶石/氧化物晶格失配所决定的,在运动反应前沿必须稳定地容纳它。通过研究一系列不同的尖晶石,实验中系统地改变了反应前沿晶格失配的符号和程度。 Mg2TiO4,MgFe2O4,MgAl2O4,MgCr2O4和MgIn2O4,揭示了不同类型的界面位错。分别以动力学反应障碍之间的相互作用,固态反应的原子机理以及在运动反应前沿持续存在的界面缺陷(壁架,位错)的性质为模型,讨论了各自的结果。 [参考:37]

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