Nano‐embossed Hollow Spherical TiO2 as Bifunctional Material for High‐Efficiency Dye‐Sensitized Solar Cells HJ Koo, YJ Kim, YH Lee, WI Lee, K Kim, NG Park Advanced Materials 20 (1), 195-199, 2008 | 594 | 2008 |
Formation of Highly Efficient Dye‐Sensitized Solar Cells by Hierarchical Pore Generation with Nanoporous TiO2 Spheres YJ Kim, MH Lee, HJ Kim, G Lim, YS Choi, NG Park, K Kim, WI Lee Advanced Materials 21 (36), 3668-3673, 2009 | 523 | 2009 |
Heterojunctioned BiOCl/Bi2O3, a new visible light photocatalyst SY Chai, YJ Kim, MH Jung, AK Chakraborty, D Jung, WI Lee Journal of Catalysis 262 (1), 144-149, 2009 | 466 | 2009 |
Photocatalytic behavior of WO3-loaded TiO2 in an oxidation reaction YT Kwon, KY Song, WI Lee, GJ Choi, YR Do Journal of Catalysis 191 (1), 192-199, 2000 | 458 | 2000 |
A highly efficient organic sensitizer for dye-sensitized solar cells S Hwang, JH Lee, C Park, H Lee, C Kim, C Park, MH Lee, W Lee, J Park, ... Chemical Communications, 4887-4889, 2007 | 394 | 2007 |
Preparation of Size-Controlled TiO2 Nanoparticles and Derivation of Optically Transparent Photocatalytic Films SY Chae, MK Park, SK Lee, TY Kim, SK Kim, WI Lee Chemistry of Materials 15 (17), 3326-3331, 2003 | 355 | 2003 |
Preparation of Highly Ordered Cubic Mesoporous WO3/TiO2 Films and Their Photocatalytic Properties JH Pan, WI Lee Chemistry of Materials 18 (3), 847-853, 2006 | 288 | 2006 |
Preparation of Transparent Particulate MoO3/TiO2 and WO3/TiO2 Films and Their Photocatalytic Properties KY Song, MK Park, YT Kwon, HW Lee, WJ Chung, WI Lee Chemistry of materials 13 (7), 2349-2355, 2001 | 287 | 2001 |
The effect of WO3 on the photocatalytic activity of TiO2 YR Do, W Lee, K Dwight, A Wold Journal of Solid State Chemistry 108 (1), 198-201, 1994 | 280 | 1994 |
Size-dependent light-scattering effects of nanoporous TiO2 spheres in dye-sensitized solar cells IG Yu, YJ Kim, HJ Kim, C Lee, WI Lee Journal of Materials Chemistry 21 (2), 532-538, 2011 | 208 | 2011 |
Ratiometric and turn-on monitoring for heavy and transition metal ions in aqueous solution with a fluorescent peptide sensor BP Joshi, J Park, WI Lee, KH Lee Talanta 78 (3), 903-909, 2009 | 200 | 2009 |
Novel Ag3PO4/TiO2 composites for efficient decomposition of gaseous 2-propanol under visible-light irradiation SB Rawal, S Do Sung, WI Lee Catalysis Communications 17, 131-135, 2012 | 164 | 2012 |
Design of visible-light photocatalysts by coupling of narrow bandgap semiconductors and TiO 2: effect of their relative energy band positions on the photocatalytic efficiency SB Rawal, S Bera, D Lee, DJ Jang, WI Lee Catalysis Science & Technology 3 (7), 1822-1830, 2013 | 156 | 2013 |
14.8% perovskite solar cells employing carbazole derivatives as hole transporting materials S Do Sung, MS Kang, IT Choi, HM Kim, H Kim, MP Hong, HK Kim, WI Lee Chemical Communications 50 (91), 14161-14163, 2014 | 152 | 2014 |
Effect of five-membered heteroaromatic linkers to the performance of phenothiazine-based dye-sensitized solar cells SH Kim, HW Kim, C Sakong, J Namgoong, SW Park, MJ Ko, CH Lee, ... Organic letters 13 (21), 5784-5787, 2011 | 143 | 2011 |
Heterojunction of FeTiO3 Nanodisc and TiO2 Nanoparticle for a Novel Visible Light Photocatalyst YJ Kim, B Gao, SY Han, MH Jung, AK Chakraborty, T Ko, C Lee, WI Lee The Journal of Physical Chemistry C 113 (44), 19179-19184, 2009 | 142 | 2009 |
Block copolymer-templated synthesis of highly organized mesoporous TiO2-based films and their photoelectrochemical applications JH Pan, XS Zhao, WI Lee Chemical engineering journal 170 (2-3), 363-380, 2011 | 137 | 2011 |
Efficient decomposition of organic compounds with FeTiO3/TiO2 heterojunction under visible light irradiation B Gao, YJ Kim, AK Chakraborty, WI Lee Applied Catalysis B: Environmental 83 (3-4), 202-207, 2008 | 125 | 2008 |
Enhanced ethanol sensing properties of TiO2 nanotube sensors Y Kwon, H Kim, S Lee, IJ Chin, TY Seong, WI Lee, C Lee Sensors and Actuators B: Chemical 173, 441-446, 2012 | 124 | 2012 |
Photocatalytic WO 3/TiO 2 nanoparticles working under visible light SY Chai, YJ Kim, WI Lee Journal of electroceramics 17 (2), 909-912, 2006 | 112 | 2006 |