1 |
Kinetic analysis of photoinduced reactions at the water semiconductor interface Minero C Catalysis Today, 54(2-3), 205, 1999 |
2 |
Photodegradation of phenol and 4-chlorophenol by BaO-Li2O-TiO2 catalysts Leyva E, Moctezuma E, Ruiz MG, Torres-Martinez L Catalysis Today, 40(4), 367, 1998 |
3 |
Fundamental reactions in illuminated titanium dioxide nanocrystallite layers studied by pulsed laser Rabani J, Yamashita K, Ushida K, Stark J, Kira A Journal of Physical Chemistry B, 102(10), 1689, 1998 |
4 |
Influence of platinum on catalytic activity of polycrystalline WO3 employed for phenol photodegradation in aqueous suspension Sclafani A, Palmisano L, Marci G, Venezia AM Solar Energy Materials and Solar Cells, 51(2), 203, 1998 |
5 |
A New Method to Determine the Generation of Hydroxyl Radicals in Illuminated TiO2 Suspensions Schwarz PF, Turro NJ, Bossmann SH, Braun AM, Wahab AM, Durr H Journal of Physical Chemistry B, 101(36), 7127, 1997 |
6 |
Mechanism of Photooxidation of Trichloroethylene on TiO2 - Detection of Intermediates by Infrared-Spectroscopy Fan JF, Yates JT Journal of the American Chemical Society, 118(19), 4686, 1996 |
7 |
Absence of Platinum Enhancement of a Photoreaction on TiO2-Co Photooxidation on Pt/TiO2(110) Linsebigler A, Rusu C, Yates JT Journal of the American Chemical Society, 118(22), 5284, 1996 |
8 |
Photooxidation of Ch3Cl on TiO2(110) - A Mechanism Not Involving H2O Lu G, Linsebigler A, Yates JT Journal of Physical Chemistry, 99(19), 7626, 1995 |
9 |
Iron Oxide-Mediated Degradation, Photodegradation, and Biodegradation of Aminophenols Pulgarin C, Kiwi J Langmuir, 11(2), 519, 1995 |
10 |
Oxidation of Phenol by Radiolytically Generated (Oh)-O-Center-Dot and Chemically Generated SO4-Center-Dot- - A Distinction Between (Oh)-O-Center-Dot Transfer and Hole Oxidation in the Photolysis of TiO2 Colloid Solution Goldstein S, Czapski G, Rabani J Journal of Physical Chemistry, 98(26), 6586, 1994 |