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Shohei Tada
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Ni/CeO2 catalysts with high CO2 methanation activity and high CH4 selectivity at low temperatures
S Tada, T Shimizu, H Kameyama, T Haneda, R Kikuchi
International Journal of Hydrogen Energy 37 (7), 5527-5531, 2012
6122012
CO2‐to‐Methanol Hydrogenation on Zirconia‐Supported Copper Nanoparticles: Reaction Intermediates and the Role of the Metal–Support Interface
K Larmier, WC Liao, S Tada, E Lam, R Verel, A Bansode, A Urakawa, ...
Angewandte Chemie International Edition 56 (9), 2318-2323, 2017
5232017
Promotion of CO2 methanation activity and CH4 selectivity at low temperatures over Ru/CeO2/Al2O3 catalysts
S Tada, OJ Ochieng, R Kikuchi, T Haneda, H Kameyama
International Journal of Hydrogen Energy 39 (19), 10090–10100, 2014
1972014
Isolated Zr Surface Sites on Silica Promote Hydrogenation of CO2 to CH3OH in Supported Cu Catalysts
E Lam, K Larmier, P Wolf, S Tada, OV Safonova, C Copéret
Journal of the American Chemical Society 140 (33), 10530-10535, 2018
1872018
Design of Interfacial Sites between Cu and Amorphous ZrO2 Dedicated to CO2-to-Methanol Hydrogenation
S Tada, S Kayamori, T Honma, H Kamei, A Nariyuki, K Kon, T Toyao, ...
ACS Catalysis 8 (9), 7809-7819, 2018
1712018
Ag addition to CuO-ZrO2 catalysts promotes methanol synthesis via CO2 hydrogenation
S Tada, F Watanabe, K Kiyota, N Shimoda, R Hayashi, M Takahashi, ...
Journal of Catalysis 351, 107-118, 2017
1212017
Mechanistic study and catalyst development for selective carbon monoxide methanation
S Tada, R Kikuchi
Catalysis Science & Technology 5 (6), 3061-3070, 2015
1192015
Study of RuNi/TiO2 catalysts for selective CO methanation
S Tada, R Kikuchi, A Takagaki, T Sugawara, ST Oyama, K Urasaki, ...
Applied Catalysis B: Environmental 140, 258-264, 2013
1022013
Cu Species Incorporated into Amorphous ZrO2 with High Activity and Selectivity in CO2-to-Methanol Hydrogenation
S Tada, A Katagiri, K Kiyota, T Honma, H Kamei, A Nariyuki, S Uchida, ...
The Journal of Physical Chemistry C, 2018
972018
Long-term durability of Ni/TiO2 and Ru–Ni/TiO2 catalysts for selective CO methanation
S Tada, R Kikuchi, K Wada, K Osada, K Akiyama, S Satokawa, ...
Journal of Power Sources 264, 59-66, 2014
942014
Sponge Ni catalyst with high activity in CO2 methanation
S Tada, S Ikeda, N Shimoda, T Honma, M Takahashi, A Nariyuki, ...
International Journal of Hydrogen Energy 42 (51), 30126-30134, 2017
912017
Effect of reduction pretreatment and support materials on selective CO methanation over supported Ru catalysts
S Tada, R Kikuchi, K Urasaki, S Satokawa
Applied Catalysis A: General 404 (1-2), 149-154, 2011
882011
N2O Pulse Titration of Ni/α-Al2O3 Catalysts: A New Technique Applicable to Nickel Surface-Area Determination of Nickel-Based Catalysts
S Tada, M Yokoyama, R Kikuchi, T Haneda, H Kameyama
The Journal of Physical Chemistry C 117 (28), 14652-14658, 2013
622013
Effect of metal addition to Ru/TiO2 catalyst on selective CO methanation
S Tada, R Kikuchi, A Takagaki, T Sugawara, S Ted Oyama, S Satokawa
Catalysis Today 232, 16-21, 2014
602014
Flame spray pyrolysis makes highly loaded Cu nanoparticles on ZrO2 for CO2-to-methanol hydrogenation
S Tada, K Fujiwara, T Yamamura, M Nishijima, S Uchida, R Kikuchi
Chemical Engineering Journal 381, 122750, 2020
542020
Effect of Ru and Ni ratio on selective CO methanation over Ru–Ni/TiO2
S Tada, D Minori, F Otsuka, R Kikuchi, K Osada, K Akiyama, S Satokawa
Fuel 129, 219-224, 2014
542014
What Are the Best Active Sites for CO2 Methanation over Ni/CeO2?
S Tada, H Nagase, N Fujiwara, R Kikuchi
Energy & Fuels 35 (6), 5241-5251, 2021
512021
Methanol synthesis via CO 2 hydrogenation over CuO–ZrO 2 prepared by two-nozzle flame spray pyrolysis
S Tada, K Larmier, R Büchel, C Copéret
Catalysis Science & Technology 8 (8), 2056-2060, 2018
502018
Active Sites on ZnxZr1–xO2–x Solid Solution Catalysts for CO2-to-Methanol Hydrogenation
S Tada, N Ochiai, H Kinoshita, M Yoshida, N Shimada, T Joutsuka, ...
ACS Catalysis 12 (13), 7748-7759, 2022
372022
Surface Sites in Cu-Nanoparticles: Chemical Reactivity or Microscopy?
K Larmier, S Tada, A Comas-Vives, C Copéret
The journal of physical chemistry letters 7 (16), 3259-3263, 2016
372016
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