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Order and disorder among the layered double hydroxides: combined Rietveld and DIFFaX approach

机译:层状双氢氧化物之间的有序和无序:Rietveld和DIFFaX组合方法

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A combined approach using the Rietveld technique of structure refinement and DIFFaX simulations of the powder patterns enables us to not only arrive at the complete structure of the layered double hydroxides (LDHs), but also classify and quantify the nature of structural disorder. Hydrolysis of urea dissolved in mixed-metal salt solutions containing a divalent metal (Mg2+, Co2+) with Al3+ results in the homogeneous precipitation of the corresponding LDH. The products obtained are highly crystalline enabling a complete structure determination including subsequent refinement by the Rietveld method. In contrast, the LDH of Ni2+ with Al3+ crystallizes with the incorporation of stacking faults. A combined Rietveld-DIFFaX approach shows that even 'crystalline' samples of this LDH incorporate up to 9% of stacking faults, which are not eliminated even at elevated temperatures (473 K). These studies have implications for the order, disorder and 'crystallinity' of layered phases in general and metal hydroxides in particular.
机译:使用Rietveld结构细化技术和粉末图案的DIFFaX模拟相结合的方法不仅使我们能够得出层状双氢氧化物(LDHs)的完整结构,而且能够对结构无序的性质进行分类和量化。溶解在含有二价金属(Mg2 +,Co2 +)和Al3 +的混合金属盐溶液中的尿素的水解导致相应LDH的均匀沉淀。所获得的产品是高度结晶的,能够确定完整的结构,包括随后通过Rietveld方法进行的提纯。相反,Ni2 +和Al3 +的LDH随堆积缺陷的结合而结晶。 Rietveld-DIFFaX组合方法显示,即使这种LDH的“结晶”样品也包含高达9%的堆垛层错,即使在高温(473 K)下也无法消除。这些研究通常对层状相特别是金属氢氧化物的有序,无序和“结晶性”产生影响。

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