1 |
Reverse Water-Gas Shift Reaction via Redox of Re Nanoclusters Supported on TiO2 Ting KW, Maeno Z, Siddiki SMAH, Shimizu K, Toyao T Chemistry Letters, 50(1), 158, 2021 |
2 |
Aqueous phase reforming of xylitol over Pt-Re bimetallic catalyst: Effect of the Re addition Kirilin AV, Tokarev AV, Manyar H, Hardacre C, Salmi T, Mikkola JP, Murzin DY Catalysis Today, 223, 97, 2014 |
3 |
Sonophotocatalytic degradation of Acid Blue 113 in the presence of rare earth nanoclusters loaded TiO2 nanophotocatalysts Sathishkumar P, Mangalaraja RV, Rozas O, Mansilla HD, Gracia-Pinilla MA, Melendrez MF, Anandan S Separation and Purification Technology, 133, 407, 2014 |
4 |
Low CO content hydrogen production from bio-ethanol using a combined plasma reforming-catalytic water gas shift reactor Zhu XL, Hoang T, Lobban LL, Mallinson RG Applied Catalysis B: Environmental, 94(3-4), 311, 2010 |
5 |
Difference in the reaction behavior between Pt-Re/TiO2 (Rutile) and Pt-Re/ZrO2 catalysts for low-temperature water gas shift reactions Iida H, Igarashi A Applied Catalysis A: General, 303(1), 48, 2006 |
6 |
Structure characterization of Pt-Re/TiO2 (rutile) and Pt-Re/ZrO2 catalysts for water gas shift reaction at low-temperature Iida H, Igarashi A Applied Catalysis A: General, 303(2), 192, 2006 |
7 |
The water-gas-shift reaction over Ir/TiO2 and Ir-Re/TiO2 catalysts Sato Y, Soma Y, Miyao T, Naito S Applied Catalysis A: General, 304(1), 78, 2006 |
8 |
Mechanistic study of water-gas-shift reaction over TiO2 supported Pt-Re and Pd-Re catalysts Sato Y, Terada K, Hasegawa S, Miyao T, Naito S Applied Catalysis A: General, 296(1), 80, 2005 |