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首页> 外文期刊>Current Nanoscience >Preparation, Characterization and Intercalation Reactions of New Nano-Ordered Layered Materials, Zn-Al-Si LDH
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Preparation, Characterization and Intercalation Reactions of New Nano-Ordered Layered Materials, Zn-Al-Si LDH

机译:新型纳米有序层状材料Zn-Al-Si LDH的制备,表征和嵌入反应

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Layered double hydroxides (LDHs) and anionic clay are nano-ordered layered compounds and are well known for their ability to intercalate anionic compounds. Most LDHs are prepared conventionally only with di- and tri-valent cations. Alumina-silicate structures are very familiar in the literature as cationic clay or zeolite structure, however, there is no data for alumina-silicate as anionic clay. In this study, a new series of Zn-Al-Si LDHs with various Zn/Al/Si ratios, consisting of di-, tri-, and tetra-valent cations, were prepared and characterized by energy-dispersive X-ray spectrometry (SEM/EDS), X-ray powder diffraction (XRD), infrared spectra (IR), thermal analyses (TG, DTG and DTA), and scanning electron microscopy (SEM), Characterization of the samples containing molar percentages of aluminum and silicon 20-40% revealed formation of well crystallized phases, layered structures and no excess phases. XRD results and thermal analyses indicated that the carbonate anions have two orientations inside the interlayer region. After intercalation reactions with organic acids, mono- and di-carboxylic acids, the interlayer spacing of Zn-Al-Si LDH increased and organic-inorganic nano-hybrid materials formed. SEM images showed that the morphology of Zn-Al-Si LDH before and after intercalation reactions is plate-like structure. The results presented in this work conclude that the formation of the layer double hydroxide is not limited to the reactions between di- and trivalent cations, although these are the only reactions reported by many researchers.
机译:层状双氢氧化物(LDHs)和阴离子粘土是纳米级的层状化合物,众所周知,它们具有插入阴离子化合物的能力。通常,大多数LDH仅用二价和三价阳离子制备。在文献中氧化铝-硅酸盐结构作为阳离子粘土或沸石结构是非常熟悉的,但是,没有数据将氧化铝-硅酸盐作为阴离子粘土。在这项研究中,制备了一系列新的具有不同Zn / Al / Si比的Zn-Al-Si LDH,由二价,三价和四价阳离子组成,并通过能量色散X射线光谱法进行了表征( SEM / EDS),X射线粉末衍射(XRD),红外光谱(IR),热分析(TG,DTG和DTA)和扫描电子显微镜(SEM),包含铝和硅摩尔百分比的样品的表征20 -40%表明形成了良好结晶的相,层状结构并且没有过量的相。 XRD结果和热分析表明,碳酸根阴离子在夹层区域内部具有两个方向。与有机酸,一元羧酸和二元羧酸进行插层反应后,Zn-Al-Si LDH的层间距增加,形成了有机-无机纳米杂化材料。 SEM图像表明,插层反应前后的Zn-Al-Si LDH的形态为板状结构。这项工作提出的结果表明,双氢氧化物层的形成不仅限于二价和三价阳离子之间的反应,尽管这是许多研究人员报道的唯一反应。

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