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  Synthesis of Yttria-Based Crystalline and Lamellar Nanostructures and their Formation Mechanism

Pinna, N., Garnweitner, G., Beato, P., Niederberger, M., & Antonietti, M. (2005). Synthesis of Yttria-Based Crystalline and Lamellar Nanostructures and their Formation Mechanism. Small, 1(1), 112-121. doi:10.1002/smll.200400014.

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Synthesis of Yttria_PDF_Pablo.pdf (Any fulltext), 80KB
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Pinna, Nicola1, Author           
Garnweitner, Georg2, Author
Beato, Pablo1, Author           
Niederberger, Markus2, Author
Antonietti, Markus2, Author
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1Inorganic Chemistry, Fritz Haber Institute, Max Planck Society, ou_24023              
2Max Planck Society, ou_persistent13              

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Free keywords: luminescence • nanomaterials • nonaqueous synthesis • organic-inorganic hybrid composites • oxides
 Abstract: A nonaqueous synthetic route for the preparation of a regular crystalline yttria mesostructure is presented. The reaction between yttrium alkoxides and benzyl alcohol results in the formation of a highly ordered lamellar nanocomposite consisting of yttria layers with a confined thickness of about 0.6 nm, separated from each other by organic layers of intercalated benzoate molecules. Doping with europium leads to strong red luminescence. The nanostructure formation proceeds via two reactions. A C-C bond formation occurs between benzyl alcohol and the isopropanolate ligand. At the same time, yttrium oxide catalyzes two low-temperature hydride-transfer reactions to form benzoic acid and toluene from benzyl alcohol via benzaldehyde, thus limiting the growth of the thickness of the lamellae.

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Language(s): eng - English
 Dates: 2005-01
 Publication Status: Issued
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 Rev. Type: Peer
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Title: Small
Source Genre: Journal
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Pages: - Volume / Issue: 1 (1) Sequence Number: - Start / End Page: 112 - 121 Identifier: -