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Dynamics of Intercalation/De-Intercalation of Rhodamine B during the Polymorphic Transformation of CdAl Layered Double Hydroxide to the Brucite-Like Cadmium Hydroxide

机译:CdAl层状双氢氧化物向水镁石样氢氧化镉多晶型转化过程中若丹明B的嵌入/去嵌入动力学

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摘要

Cadmium-Aluminum layered double hydroxide (CdAl LDH) is thermodynamically unstable and transforms to Cd(OH)2 and Al(OH)3 in a short period of time. We present a reaction-diffusion framework that enables us to use in situ steady-state fluorescence spectroscopy to study the kinetics of intercalation of a fluorescent probe (Rhodamine B (RhB)) during the formation of the CdAl LDH and its de-intercalation upon the conversion of the LDH phase to the β phase (Cd(OH)2). The method involves the diffusion of sodium hydroxide into a hydrogel gel matrix containing the aluminum and cadmium ions as well as the species we wish to incorporate in the interlayers of the LDH. The existence of RhB between the LDH layers and its expel during the transition into the β phase are proved via fluorescence microscopy, XRD and ssNMR. The activation energies of intercalation and de-intercalation of RhB are computed and show dependence on the cationic ratio of the corresponding LDH. We find that the energies of de- intercalation are systematically higher than those of intercalation proving that the dyes are stabilized due to the probe-brucite sheets interactions.
机译:镉铝层状双氢氧化物(CdAl LDH)在热力学上不稳定,并在短时间内转变为Cd(OH)2和Al(OH)3。我们提供了一个反应扩散框架,使我们能够使用原位稳态荧光光谱研究CdAl LDH形成过程中荧光探针(若丹明B(RhB))的嵌入动力学及其在CdAl LDH上的去嵌入LDH相转变为β相(Cd(OH)2)。该方法涉及将氢氧化钠扩散到含有铝和镉离子以及我们希望掺入LDH中间层的物质的水凝胶凝胶基质中。通过荧光显微镜,XRD和ssNMR证实了LDH层之间的RhB存在及其在过渡到β相期间的排出。计算了RhB的嵌入和脱嵌的活化能,并显示出它们依赖于相应LDH的阳离子比率。我们发现脱嵌的能量在系统上高于嵌插的能量,这证明了由于探针-青石板的相互作用,染料是稳定的。

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