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Erschienen in: Journal of Materials Science: Materials in Electronics 12/2019

18.05.2019

Synthesis and characterization of mixed metal oxide nanoparticles derived from Co–Cr layered double hydroxides and their thin films

verfasst von: Ahmed F. Al-Hossainy, Ali Ibrahim, Mohamed Sh. Zoromba

Erschienen in: Journal of Materials Science: Materials in Electronics | Ausgabe 12/2019

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Abstract

In this paper, cobalt as divalent and chromium as trivalent ion layered double hydroxide was prepared in the absence and in the presence acetamide as organic molecule template by using co-precipitation method in aqueous solution at the room temperature. The resulting cobalt–chromium (Co–Cr) LDH and cobalt–chromium/acetamide (Co–Cr)/A LDH were dried at 358 K. To produce mixed metal oxides in nanoscale with appropriate physical properties form both cobalt divalent and chromium trivalent LDHs, the calcination process was applied for the prepared (Co–Cr)/A LDH samples at 873 K for 3 h. The calcined and un-calcined (Co–Cr)/A LDH samples were characterized using various techniques including FTIR, TGA, XRD and SEM techniques. Before the calcination, the XRD pattern of the (Co–Cr)/Acetamide LDH displays polycrystalline of LDH, while after calcination process, the crystallinity state changes to be semi-crystalline material. Fabrication of thin film from (Co–Cr)/A LDH was conducted by thermal evaporation method (Edwards type E 306 A, England) with thickness 200 ± 5 nm. The optical characteristics of (Co–Cr)/A LDH film, within the wavelength range of 200 nm to 1000 nm spectra for both calcined and un-calcined samples, were studied. The average optical energy gaps for (Co–Cr)/A LDH film before and after calcination were 2.79 eV and 2.81 eV, respectively. The optical absorption edges revealed the existence of blue shift with increasing of the calcination temperature. The resulting results could be useful for the fabrication of micro-nanodevices.

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Metadaten
Titel
Synthesis and characterization of mixed metal oxide nanoparticles derived from Co–Cr layered double hydroxides and their thin films
verfasst von
Ahmed F. Al-Hossainy
Ali Ibrahim
Mohamed Sh. Zoromba
Publikationsdatum
18.05.2019
Verlag
Springer US
Erschienen in
Journal of Materials Science: Materials in Electronics / Ausgabe 12/2019
Print ISSN: 0957-4522
Elektronische ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-019-01520-9

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