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Inhibition of growth in solid solution-aqueous solution systems by non-incorporating impurities

机译:非掺入杂质抑制固溶体-水溶液系统中的生长

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Crystal growth inhibition by non-incorporating impurities has been described and quantified since 1958 by the so-called step pinning model by Cabrera and Vermilyea [1 ]. In the original model, as well as in its recent improvements by Weaver et al. in 2006 and 2007 [2,3], only the inhibition by the adsorption of impurities on crystal surfaces with fixed compositions is considered. However, most of the crystals found in nature are solid solutions with more or less wide chemical variability. Therefore, in order to provide more realistic models of crystal growth inhibition in natural systems, it is fundamental to study in detail the inhibition of surfaces of solid solutions by non-incorporating impurities. In this paper, the Cabrera-Vermilyea model has been generalised for the case of growth inhibition in solid solution-aqueous solution (SS-AS) systems. This generalisation was made by considering that supersaturation and the physicochemical properties of the solid solutions are functions of the solid composition. The main implication of the model is that a progressive inhibition of growth of a solid solution by increasing the concentration of an adsorbed impurity results in compositional changes on the growing surfaces.
机译:自1958年以来,就已经通过Cabrera和Vermilyea [1]所谓的步骤钉扎模型描述和量化了非掺入杂质对晶体生长的抑制作用。在原始模型中,以及Weaver等人的最新改进中。在2006年和2007年[2,3]中,仅考虑了固定成分对晶体表面杂质吸附的抑制作用。但是,自然界中发现的大多数晶体都是固溶体,具有或多或少的化学可变性。因此,为了在自然系统中提供更实际的晶体生长抑制模型,详细研究非掺入杂质对固溶体表面的抑制是至关重要的。在本文中,Cabrera-Vermilyea模型已被推广用于固溶-水溶液(SS-AS)系统中的生长抑制情况。通过考虑固溶体的过饱和度和物理化学性质是固体组合物的功能来进行这种概括。该模型的主要含义是,通过增加吸附杂质的浓度来逐步抑制固溶体的生长会导致生长表面的成分发生变化。

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