1 |
Zinc rhodium oxide and its possibility as a constituent photocatalyst for carbon dioxide reduction using water as an electron source Higuchi S, Takashima T, Osaki J, Irie H Catalysis Today, 335, 402, 2019 |
2 |
Silver-inserted heterojunction photocatalyst consisting of zinc rhodium oxide and silver antimony oxide for overall pure-water splitting under visible light Hara Y, Takashima T, Kobayashi R, Abeyrathna S, Ohtani B, Irie H Applied Catalysis B: Environmental, 209, 663, 2017 |
3 |
Theoretical study of the adsorption of rhodium on a TiO2(110)-1 x 1 surface Mutombo P, Balazs N, Majzik Z, Berko A, Chab V Applied Surface Science, 258(10), 4478, 2012 |
4 |
Investigation of the surface properties and the hydrogen evolution reaction, HER, at thermal rhodium oxide electrodes Gouveia H, Landers R, Boodts JFC Electrochimica Acta, 52(7), 2359, 2007 |
5 |
Rhodium-modified gold polycrystalline surface as anode material in alkaline medium: An electrochemical and XPS investigation Casella IG, Contursi M Journal of Electroanalytical Chemistry, 606(1), 24, 2007 |
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Electrochemical and mass variation behaviour of rhodium oxide electrodes prepared by the polymeric precursor method Santos MC, Oliveira RTS, Pereira EC, Bulhoes LOS Thin Solid Films, 483(1-2), 164, 2005 |
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Pseudocapacitive behavior of Ti/RhOx+Co3O4 electrodes in acidic medium: application to supercapacitor development de Souza AR, Arashiro E, Golveia H, Lassali TAF Electrochimica Acta, 49(12), 2015, 2004 |
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Thermally prepared Ti/RhOx electrodes IV: O-2 evolution in acid solution Hrussanova A, Guerrini E, Trasatti S Journal of Electroanalytical Chemistry, 564(1-2), 151, 2004 |
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Structural and surface properties of thermally prepared Ti/RhxTi(1-x)Oy electrodes: I - influence of preparation parameters De Campos PM, Benedetti A, De Faria LA, Cardoso V, Boodts JFC Electrochimica Acta, 47(8), 1283, 2002 |
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A new metal oxide catalyst in alcohol condensation Teterycz H, Klimkiewicz R, Licznerski BW Applied Catalysis A: General, 214(2), 243, 2001 |