Takaya Ogawa
Takaya Ogawa
Kyoto University, Graduate School of Energy Science, Department of Socio-Environmental Energy
Verified email at kyoto-u.ac.jp
Cited by
Cited by
Reduction of Dinitrogen to Ammonia Catalyzed by Molybdenum Diamido Complexes
(* = equal contribution) Lasantha A. Wickramasinghe*, Takaya Ogawa*, Richard ...
Journal of the American Chemical Society 139 (27), 9132–9135, 2017
The proton conduction mechanism in a material consisting of packed acids
T Ogawa, T Aonuma, T Tamaki, H Ohashi, H Ushiyama, K Yamashita, ...
Chemical Science 5 (12), 4878-4887, 2014
Differentiating Grotthuss proton conduction mechanisms by nuclear magnetic resonance spectroscopic analysis of frozen samples
T Ogawa, K Kamiguchi, T Tamaki, H Imai, T Yamaguchi
Analytical chemistry 86 (19), 9362-9366, 2014
Analysis of trends and emerging technologies in water electrolysis research based on a computational method: a comparison with fuel cell research
T Ogawa, M Takeuchi, Y Kajikawa
Sustainability 10 (2), 478, 2018
Assessing the industrial opportunity of academic research with patent relatedness: A case study on polymer electrolyte fuel cells
T Ogawa, Y Kajikawa
Technological Forecasting and Social Change 90, 469-475, 2015
High Electron Density on Ru in Intermetallic YRu2: The Application to Catalyst for Ammonia Synthesis
T Ogawa, Y Kobayashi, H Mizoguchi, M Kitano, H Abe, T Tada, Y Toda, ...
The Journal of Physical Chemistry C 122 (19), 10468-10475, 2018
Theoretical studies on proton transfer among a high density of acid groups: surface of zirconium phosphate with adsorbed water molecules
T Ogawa, H Ushiyama, JM Lee, T Yamaguchi, K Yamashita
The Journal of Physical Chemistry C 115 (13), 5599-5606, 2011
Landscape of research areas for zeolites and metal-organic frameworks using computational classification based on citation networks
T Ogawa, K Iyoki, T Fukushima, Y Kajikawa
Materials 10 (12), 1428, 2017
Comprehensive analysis of trends and emerging technologies in all types of fuel cells based on a computational method
T Ogawa, M Takeuchi, Y Kajikawa
Sustainability 10 (2), 458, 2018
Generating novel research ideas using computational intelligence: A case study involving fuel cells and ammonia synthesis
T Ogawa, Y Kajikawa
Technological Forecasting and Social Change 120, 41-47, 2017
Non-humidified proton conduction between a Lewis acid–base pair
T Ogawa, H Ohashi, T Tamaki, T Yamaguchi
Physical Chemistry Chemical Physics 15 (33), 13814-13817, 2013
Theoretical studies of the mechanism of proton transfer at the surface of zirconium phosphate
T Ogawa, H Ushiyama, K Yamashita, JM Lee, T Yamaguchi
Chemistry letters 39 (7), 736-737, 2010
Proton diffusion facilitated by indirect interactions between proton donors through several hydrogen bonds
T Ogawa, H Ohashi, T Tamaki, T Yamaguchi
Chemical Physics Letters 731, 136627, 2019
The effect of substrate roughness on the properties of RF sputtered AZO thin film
K Hamada, T Ogawa, H Okumura, KN Ishihara
MRS Communications 9 (2), 697-701, 2019
Extraction of potential research area in polymer electrolyte fuel cell technology using literature information
T Ogawa, Y Kajikawa
The Journal of Fuel cell Technology 13 (1), 72-75, 2013
Economies of scale in ammonia synthesis loops embedded with iron-and ruthenium-based catalysts
M Yoshida, T Ogawa, Y Imamura, KN Ishihara
International Journal of Hydrogen Energy, 2021
Enhanced Photocatalytic Activity of BiVO4/Bi2S3/SnS2 Heterojunction under Visible Light
S Meng, T Ogawa, H Okumura, KN Ishihara
Catalysts 10 (11), 1294, 2020
Evolution and Recovery of Electrical Property of Reactive Sputtered Al‐Doped ZnO Transparent Electrode Exposed to Harsh Environment
F Machda, T Ogawa, H Okumura, KN Ishihara
physica status solidi (a) 217 (3), 1900519, 2020
Proton conductivity of organic–inorganic electrolyte for polymer electrolyte fuel cell
T Ogawa, T Tamaki, T Yamaguchi
Chemistry Letters 46 (2), 204-206, 2017
Damp-heat durability comparison of Al-doped ZnO transparent electrodes deposited at low temperatures on glass and PI-tape/PC substrates
F Machda, T Ogawa, H Okumura, KN Ishihara
Ceramics International 46 (10), 16178-16184, 2020
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