화학공학소재연구정보센터
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No. Article
1 SO32- / SO42- functionalization-tailorable catalytic surface features of Sb-promoted Cu3V2O8 on TiO2 for selective catalytic reduction of NOx with NH3
Kim J, Lee S, Kwon DW, Lee KY, Ha HP
Applied Catalysis A: General, 570, 355, 2019
2 Facile growth of compositionally tuned copper vanadate nanostructured thin films for efficient photoelectrochemical water splitting
Kalanur SS, Seo H
Applied Catalysis B: Environmental, 249, 235, 2019
3 A review on copper vanadate-based nanostructures for photocatalysis energy production
Hassan A, Iqbal T, Tahir MB, Afsheen S
International Journal of Energy Research, 43(1), 9, 2019
4 Exploration of surface properties of Sb-promoted copper vanadate catalysts for selective catalytic reduction of NOx by NH3
Kim J, Kwon DW, Lee S, Ha HP
Applied Catalysis B: Environmental, 236, 314, 2018
5 Chromium doped copper vanadate photoanodes for water splitting
Cardenas-Morcoso D, Peiro-Franch A, Herraiz-Cardona I, Gimenez S
Catalysis Today, 290, 65, 2017
6 Structure and SO3 decomposition activity of nCuO-V2O5/SiO2 (n=0, 1, 2, 3 and 5) catalysts for solar thermochemical water splitting cycles
Kawada T, Hinokuma S, Machida M
Catalysis Today, 242, 268, 2015
7 Hydrothermal synthesis of CuV2O6 supported on mesoporous SiO2 as SO3 decomposition catalysts for solar thermochemical hydrogen production
Kawada T, Yamashita H, Zheng QX, Machida M
International Journal of Hydrogen Energy, 39(35), 20646, 2014
8 A direct detection of amino acids with surface-enhanced Raman scattering: Cu nanoparticle-coated copper vanadate nanoribbons from mechanochemistry
Lin HY, Shao Q, Hu F, Wang H, Shao MW
Thin Solid Films, 558, 385, 2014
9 Catalytic oxidation of volatile organic compounds with a new precursor type copper vanadate
Palacio LA, Silva JM, Ribeiro FR, Ribeiro MF
Catalysis Today, 133, 502, 2008
10 Performance of supported catalysts based on a new copper vanadate-type precursor for catalytic oxidation of toluene
Palacio LA, Silva ER, Catalao R, Silva JM, Hoyos DA, Ribeiro FR, Ribeiro MR
Journal of Hazardous Materials, 153(1-2), 628, 2008