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Direct conversion of inorganic complexes to platinum/thin oxide nanoparticles decorated on MOF-derived chromium oxide/nanoporous carbon composite as an efficient electrocatalyst for ethanol oxidation reaction Kamyar N, Rezaee S, Shahrokhian S, Amini MM Journal of Colloid and Interface Science, 555, 655, 2019 |
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Investigations of chromium(III) oxide removal from the aqueous suspension using the mixed flocculant composed of anionic and cationic polyacrylamides Wigniewska M, Chibowski S, Urban T, Terpilowski K Journal of Hazardous Materials, 368, 378, 2019 |
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Dielectric properties of polyamide 12-chromium(III) oxide nanocomposites Zuev VV, Shapoval ES, Sakhatskii AS Chemical Physics Letters, 659, 277, 2016 |
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Lysozyme adsorption on the colloidal chromium(III) oxide surface: Its impact on the system stability Szewczuk-Karpisz K, Wisniewska M, Mysliwiec D Applied Surface Science, 347, 491, 2015 |
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Chromium(III) oxide carbon nanocomposites lithium-ion battery anodes with enhanced energy conversion performance Fu Y, Gu HB, Yan XR, Liu JR, Wang YR, Huang JN, Li XY, Lv HL, Wang XZ, Guo J, Lu GX, Qiu S, Guo Z Chemical Engineering Journal, 277, 186, 2015 |
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Impact of polyacrylamide with different contents of carboxyl groups on the chromium (III) oxide adsorption properties in aqueous solution Wisniewska M, Chibowski S, Urban T Journal of Hazardous Materials, 283, 815, 2015 |
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Comparison of the influence of polyaspartic acid and polylysine functional groups on the adsorption at the Cr2O3-Aqueous polymer solution interface Ostolska I, Wisniewska M Applied Surface Science, 311, 734, 2014 |
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Annealing effect on the structural and optical properties of Cr/alpha-Cr2O3 monodispersed particles based solar absorbers Khamlich S, McCrindle R, Nuru ZY, Cingo N, Maaza M Applied Surface Science, 265, 745, 2013 |
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Atomic layer deposition of Cr2O3 thin films: Effect of crystallization on growth and properties Tarre A, Aarik J, Mandar H, Niilisk A, Parna R, Rammula R, Uustare T, Rosental A, Sammelselg V Applied Surface Science, 254(16), 5149, 2008 |
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The standard Gibbs free energy of formation of calcium chromium (III) oxide in the temperature range (1073 to 1123) K Rog G, Kozlowska-Rog A, Dudek M Journal of Chemical Thermodynamics, 39(2), 275, 2007 |