Minerals to Materials: Bulk Synthesis of Aqueous Aluminum Clusters and Their Use as Precursors for Metal Oxide Thin Films

We describe a process to produce aqueous precursor solutions of the flat -Al 13 hydroxo cluster (Al13(μ3-OH)6(μ2-OH)18(H2O)24(NO3)15) via stoichiometric dissolution of bulk Al­(OH)3(s) in HNO3(aq). We highlight its facility by demonstrating high yields and large-scale synthesis. X-ray diffraction co...

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Veröffentlicht in:Chemistry of materials 2017-09, Vol.29 (18), p.7760-7765
Hauptverfasser: Fulton, Brantly L, Perkins, Cory K, Mansergh, Ryan H, Jenkins, Melanie A, Gouliouk, Vasily, Jackson, Milton N, Ramos, Juan C, Rogovoy, Nichole M, Gutierrez-Higgins, Maceo T, Boettcher, Shannon W, Conley, John F, Keszler, Douglas A, Hutchison, James E, Johnson, Darren W
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Sprache:eng
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Zusammenfassung:We describe a process to produce aqueous precursor solutions of the flat -Al 13 hydroxo cluster (Al13(μ3-OH)6(μ2-OH)18(H2O)24(NO3)15) via stoichiometric dissolution of bulk Al­(OH)3(s) in HNO3(aq). We highlight its facility by demonstrating high yields and large-scale synthesis. X-ray diffraction confirms formation of a single-phase product, and Raman spectra show characteristic O-Al-O vibrational modes, both techniques confirming the identity of the flat -Al 13 cluster in the bulk. 27Al NMR spectroscopy and dynamic light scattering also confirm the presence of the cluster in aqueous solution. We show the as-prepared solution produces smooth and continuous thin films via spin-coating. In capacitors, the films exhibit low leakage currents (near 10 nA/cm2) and dielectric constants expected for amorphous Al2O3. Because the precursor preparation requires no postsynthesis purification, it is readily scalable to large volumes.
ISSN:0897-4756
1520-5002
DOI:10.1021/acs.chemmater.7b02106