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LDH and TiO2/LDH-type nanocomposite systems: A systematic study on structural characteristics

机译:LDH和TiO2 / LDH型纳米复合材料体系:结构特征的系统研究

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The work reported involves a detailed characterization study on a series of nanocomposite systems comprising layered double hydroxides and TiO2 seeds with anatase crystal structure. The TiO2/LDH nanocomposite structural and textural features were varied by the isomorphous substitution within the LDH sheets network of the divalent cations (Zn2+ by Cu2+) and the trivalent cations (Al3+ by Fe3+ or Ti4+) respectively. In depth characterization was obtained by using a combination of XRD, N-2 sorption, SEM, TEM/EDX and SAXS characterization techniques in order to maximize the structural information of the parent and modified LDH materials. An increase material compactness on the TiO2/LDH nanocomposites was observed due to the accommodation of the TiO2 seeds within the mesopores together with a surface coating. SAXS observations indicated the modification of the morphology of the parent LDH samples by the addition of the TiO2 seeds suggesting the rearrangement of the LDH layers during the nanocomposite formation. (C) 2014 Elsevier Inc. All rights reserved.
机译:报告的工作涉及对一系列纳米复合体系的详细表征研究,该体系包括层状双氢氧化物和具有锐钛矿晶体结构的TiO2晶种。 TiO2 / LDH纳米复合材料的结构和结构特征通过分别在LDH片状网络中二价阳离子(Zn2 +,Cu2 +)和三价阳离子(Al3 +,Fe3 +或Ti4 +)的同构取代而变化。通过使用XRD,N-2吸附,SEM,TEM / EDX和SAXS表征技术的组合获得深度表征,以最大化母体和改性LDH材料的结构信息。由于将TiO 2晶种容纳在中孔内以及表面涂层,因此观察到了TiO 2 / LDH纳米复合材料的材料致密性增加。 SAXS观察结果表明,通过添加TiO2种子,母体LDH样品的形态发生了改变,表明在纳米复合材料形成过程中LDH层发生了重排。 (C)2014 Elsevier Inc.保留所有权利。

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