Title of article
Nanosized Ni–Al layered double hydroxides—Structural characterization
Author/Authors
Jitianu، نويسنده , , Mihaela and Gunness، نويسنده , , Darren C. and Aboagye، نويسنده , , Doreen E. and Zaharescu، نويسنده , , Maria and Jitianu، نويسنده , , Andrei، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
10
From page
1864
To page
1873
Abstract
Takovite, a natural mineral with the formula Ni6Al2(OH)6CO3·5H2O belongs to the large class of layered double hydroxides (LDHs) and contains positively charged Ni(II) and Al(III) layers alternating with layers containing carbonate ions and water molecules. Mesoporous takovite-type layered double hydroxides (LDH) of the general formula [Ni1−xAlx(OH)2]x+(CO32−)x/2·nH2O with different Ni/Al molar ratios (1.9–2.8) have been successfully synthesized by the sol–gel method, followed by anionic exchange using nickel acetylacetonate and aluminum isopropylate as cation precursors. A single LDH phase and an anisotropic growth of very small crystallites (below 4 nm) have been evidenced by X-ray diffraction. The effect of samples’ composition on their structural and textural characteristics has been investigated. The BET surface area values are in the range of 100–122 m2/g. BJH pore radius decreased with increase in the Al(III) content in the LDHs. FESEM micrographs show large aggregates of highly porous LDH particles, while TEM analysis reveals irregular agglomerates of crystallites, among which some of them displayed a developing hexagonal shape. The average particle size variation with the Al(III) content in the samples follows the same trend as the pore radius, the sample with the highest Ni/Al ratio displaying also the smallest particle size. This sample becomes even more interesting, since TEM analysis shows agglomerates with inside circular structures, feature not observed for the other Ni/Al ratios investigated.
Keywords
A. Layered compounds , C. Infrared spectroscopy , A. Inorganic compound , D. Surface properties , B. Sol–gel chemistry
Journal title
Materials Research Bulletin
Serial Year
2013
Journal title
Materials Research Bulletin
Record number
2103530
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