Low temperature synthesis of hexagonal shaped α-Al2O 3 using a solvothermal method

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Abstract

This study demonstrates the low temperature synthesis of α-Al 2O3 by solvothermal method using gibbsite alumina precursor in 1, 4-butanediol solvent according to various pH conditions. In acidic solution, an orthorhombic boehmite (AlOOH) structure was obtained after solvothermal reaction. A significant result in this study was that the solvothermally synthesized alumina in pH = 9 at 300 °C for 36 h represented a rhombohedral α-Al2O3 structure hexagonal shaped with about 1.52.0 m of particle size. Otherwise, the α-Al 2O3 structure was rather changed to the mixture of a boehmite and α-Al2O3 structures above pH = 11. In the case of α-Al2O3 synthesized at pH = 9, the specific surface area was 26.18 m2/g, and the particles that were stable in acidic solution resulted in 61.80 mV of zeta potential. © 2012 A-Young Kim et al.

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Kim, A. Y., Kim, H. S., Park, N. K., Lee, T. J., Lee, W. G., Kim, H. D., … Kang, M. (2012). Low temperature synthesis of hexagonal shaped α-Al2O 3 using a solvothermal method. Journal of Nanomaterials, 2012. https://doi.org/10.1155/2012/907503

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