Active sites of nitrogen-doped carbon materials for oxygen reduction reaction clarified using model catalysts D Guo, R Shibuya, C Akiba, S Saji, T Kondo, J Nakamura Science 351 (6271), 361-365, 2016 | 4040 | 2016 |
Enhanced electrocatalytic activity of Pt subnanoclusters on graphene nanosheet surface EJ Yoo, T Okata, T Akita, M Kohyama, J Nakamura, I Honma Nano letters 9 (6), 2255-2259, 2009 | 1311 | 2009 |
Active sites and mechanism of oxygen reduction reaction electrocatalysis on nitrogen‐doped carbon materials SK Singh, K Takeyasu, J Nakamura Advanced Materials 31 (13), 1804297, 2019 | 618 | 2019 |
The chemical modification seen in the Cu/ZnO methanol synthesis catalysts T Fujitani, J Nakamura Applied Catalysis A: General 191 (1-2), 111-129, 2000 | 366 | 2000 |
On the issue of the active site and the role of ZnO in Cu/ZnO methanol synthesis catalysts J Nakamura, Y Choi, T Fujitani Topics in catalysis 22, 277-285, 2003 | 347 | 2003 |
Kinetics and mechanism of the water-gas shift reaction catalysed by the clean and Cs-promoted Cu (110) surface: a comparison with Cu (111) J Nakamura, JM Campbell, CT Campbell Journal of the Chemical Society, Faraday Transactions 86 (15), 2725-2734, 1990 | 332 | 1990 |
The effect of ZnO in methanol synthesis catalysts on Cu dispersion and the specific activity T Fujitani, J Nakamura Catalysis letters 56 (2), 119-124, 1998 | 326 | 1998 |
Reduction of Pt usage in fuel cell electrocatalysts with carbon nanotube electrodes T Matsumoto, T Komatsu, K Arai, T Yamazaki, M Kijima, H Shimizu, ... Chemical communications, 840-841, 2004 | 320 | 2004 |
Atomic-scale characterization of nitrogen-doped graphite: Effects of dopant nitrogen on the local electronic structure of the surrounding carbon atoms T Kondo, S Casolo, T Suzuki, T Shikano, M Sakurai, Y Harada, M Saito, ... Physical Review B—Condensed Matter and Materials Physics 86 (3), 035436, 2012 | 316 | 2012 |
The kinetics and mechanism of methanol synthesis by hydrogenation of CO2 over a Zn-deposited Cu (111) surface T Fujitani, I Nakamura, T Uchijima, J Nakamura Surface science 383 (2-3), 285-298, 1997 | 267 | 1997 |
Development of an active Ga2O3 supported palladium catalyst for the synthesis of methanol from carbon dioxide and hydrogen T Fujitani, M Saito, Y Kanai, T Watanabe, J Nakamura, T Uchijima Applied Catalysis A: General 125 (2), L199-L202, 1995 | 267 | 1995 |
The role of ZnO in Cu/ZnO methanol synthesis catalysts—morphology effect or active site model? Y Choi, K Futagami, T Fujitani, J Nakamura Applied Catalysis A: General 208 (1-2), 163-167, 2001 | 256 | 2001 |
Role of support in reforming of CH4 with CO2 over Rh catalysts J Nakamura, K Aikawa, K Sato, T Uchijima Catalysis letters 25, 265-270, 1994 | 248 | 1994 |
Efficient usage of highly dispersed Pt on carbon nanotubes for electrode catalysts of polymer electrolyte fuel cells T Matsumoto, T Komatsu, H Nakano, K Arai, Y Nagashima, E Yoo, ... Catalysis Today 90 (3-4), 277-281, 2004 | 240 | 2004 |
Formation and Characterization of Hydrogen Boride Sheets Derived from MgB2 by Cation Exchange H Nishino, T Fujita, NT Cuong, S Tominaka, M Miyauchi, S Iimura, ... Journal of the American Chemical Society 139 (39), 13761-13769, 2017 | 217 | 2017 |
The role of metal oxides in promoting a copper catalyst for methanol synthesis T Fujitani, M Saito, Y Kanai, T Kakumoto, T Watanabe, J Nakamura, ... Catalysis letters 25, 271-276, 1994 | 202 | 1994 |
Atomic hydrogen storage in carbon nanotubes promoted by metal catalysts E Yoo, L Gao, T Komatsu, N Yagai, K Arai, T Yamazaki, K Matsuishi, ... The Journal of Physical Chemistry B 108 (49), 18903-18907, 2004 | 195 | 2004 |
The role of ZnO in Cu/ZnO methanol synthesis catalysts J Nakamura, T Uchijima, Y Kanai, T Fujitani Catalysis Today 28 (3), 223-230, 1996 | 180 | 1996 |
Structure sensitivity for forward and reverse water-gas shift reactions on copper surfaces: a DFT study GC Wang, J Nakamura The Journal of Physical Chemistry Letters 1 (20), 3053-3057, 2010 | 173 | 2010 |
Kinetic study of carbon nanotube synthesis over Mo/Co/MgO catalysts L Ni, K Kuroda, LP Zhou, T Kizuka, K Ohta, K Matsuishi, J Nakamura Carbon 44 (11), 2265-2272, 2006 | 173 | 2006 |