1 |
A Study of Methyl Formate Production from Carbon Dioxide Hydrogenation in Methanol over a Copper Zinc Oxide Catalyst Yu KMK, Tsang SC Catalysis Letters, 141(2), 259, 2011 |
2 |
Hydrogen production from formic acid decomposition at room temperature using a Ag-Pd core-shell nanocatalyst Tedsree K, Li T, Jones S, Chan CWA, Yu KMK, Bagot PAJ, Marquis EA, Smith GDW, Tsang SCE Nature Nanotechnology, 6(5), 302, 2011 |
3 |
Catalytic Coupling of CO2 with Epoxide Over Supported and Unsupported Amines Yu KMK, Curcic I, Gabriel J, Morganstewart H, Tsang SC Journal of Physical Chemistry A, 114(11), 3863, 2010 |
4 |
Carbon-decorated FePt nanoparticles Caiulo N, Yu CH, Yu KMK, Lo CCH, Oduro W, Thiebaut B, Bishop P, Tsang SC Advanced Functional Materials, 17(8), 1392, 2007 |
5 |
Selective oxidation of cyclohexane in supercritical carbon dioxide Yu KMK, Abutaki A, Zhou Y, Yue B, He HY, Tsang SC Catalysis Letters, 113(3-4), 115, 2007 |
6 |
Carbon dioxide fixation into chemicals (methyl formate) at high yields by surface coupling over a Pd/Cu/ZnO nanocatalyst Yu KMK, Yeung CMY, Tsang SC Journal of the American Chemical Society, 129(20), 6360, 2007 |
7 |
A new oxidation catalyst system using fluorous cobalt(II) species in water-supercritical carbon dioxide (C-H free environment) Tsang SC, Zhu J, Yu KMK Catalysis Letters, 106(3-4), 123, 2006 |
8 |
One-step catalytic cyclohexane oxidation to adipic acid using molecular oxygen Yu KMK, Hummeida R, Abutaki A, Tsang SC Catalysis Letters, 111(1-2), 51, 2006 |
9 |
Micelle-hosted bimetallic Pd-Ru nanoparticle for in situ catalytic hydrogenation in supercritical CO2 Yu KMK, Meric P, Tsang SC Catalysis Today, 114(4), 428, 2006 |
10 |
Pressure-dependent product distribution of citral hydrogenation over micelle-hosted Pd and Ru nanoparticles in supercritical carbon dioxide Meric P, Yu KMK, Kong ATS, Tsang SC Journal of Catalysis, 237(2), 330, 2006 |