Essential role of hydride ion in ruthenium-based ammonia synthesis catalysts M Kitano, Y Inoue, H Ishikawa, K Yamagata, T Nakao, T Tada, S Matsuishi, ... Chemical science 7 (7), 4036-4043, 2016 | 238 | 2016 |
Solid solution for catalytic ammonia synthesis from nitrogen and hydrogen gases at 50 C M Hattori, S Iijima, T Nakao, H Hosono, M Hara Nature communications 11 (1), 2001, 2020 | 162 | 2020 |
Copper-based intermetallic electride catalyst for chemoselective hydrogenation reactions TN Ye, Y Lu, J Li, T Nakao, H Yang, T Tada, M Kitano, H Hosono Journal of the American Chemical Society 139 (47), 17089-17097, 2017 | 119 | 2017 |
Ammonia Decomposition over CaNH-Supported Ni Catalysts via an NH2–-Vacancy-Mediated Mars–van Krevelen Mechanism K Ogasawara, T Nakao, K Kishida, TN Ye, Y Lu, H Abe, Y Niwa, M Sasase, ... ACS catalysis 11 (17), 11005-11015, 2021 | 74 | 2021 |
Ruthenium Catalysts Promoted by Lanthanide Oxyhydrides with High Hydride‐Ion Mobility for Low‐Temperature Ammonia Synthesis K Ooya, J Li, K Fukui, S Iimura, T Nakao, K Ogasawara, M Sasase, H Abe, ... Advanced Energy Materials 11 (4), 2003723, 2021 | 71 | 2021 |
Palladium-bearing intermetallic electride as an efficient and stable catalyst for Suzuki cross-coupling reactions TN Ye, Y Lu, Z Xiao, J Li, T Nakao, H Abe, Y Niwa, M Kitano, T Tada, ... Nature communications 10 (1), 5653, 2019 | 67 | 2019 |
Large oblate hemispheroidal ruthenium particles supported on calcium amide as efficient catalysts for ammonia decomposition K Kishida, M Kitano, Y Inoue, M Sasase, T Nakao, T Tada, H Abe, Y Niwa, ... Chemistry–A European Journal 24 (31), 7976-7984, 2018 | 50 | 2018 |
Anchoring Bond between Ru and N Atoms of Ru/Ca2NH Catalyst: Crucial for the High Ammonia Synthesis Activity H Abe, Y Niwa, M Kitano, Y Inoue, M Sasase, T Nakao, T Tada, ... The Journal of Physical Chemistry C 121 (38), 20900-20904, 2017 | 41 | 2017 |
First-principles and microkinetic study on the mechanism for ammonia synthesis using Ru-loaded hydride catalyst T Nakao, T Tada, H Hosono The Journal of Physical Chemistry C 124 (3), 2070-2078, 2019 | 32 | 2019 |
Hexagonal BaTiO(3–x)Hx Oxyhydride as a Water-Durable Catalyst Support for Chemoselective Hydrogenation M Miyazaki, K Ogasawara, T Nakao, M Sasase, M Kitano, H Hosono Journal of the American Chemical Society 144 (14), 6453-6464, 2022 | 24 | 2022 |
Boosted Activity of Cobalt Catalysts for Ammonia Synthesis with BaAl2O4–xHy Electrides Y Jiang, R Takashima, T Nakao, M Miyazaki, Y Lu, M Sasase, Y Niwa, ... Journal of the American Chemical Society 145 (19), 10669-10680, 2023 | 21 | 2023 |
Low-Temperature Methanol Synthesis by a Cu-Loaded LaH2+x Electride H Sugiyama, T Nakao, M Miyazaki, H Abe, Y Niwa, M Kitano, H Hosono ACS Catalysis 12 (20), 12572-12581, 2022 | 10 | 2022 |
Ship-in-a-Bottle Synthesis of High Concentration of N2 Molecules in a Cage-Structured Electride T Nakao, K Ogasawara, M Kitano, S Matsuishi, PV Sushko, H Hosono The Journal of Physical Chemistry Letters 12 (4), 1295-1299, 2021 | 9 | 2021 |
18‐Crown‐6 additive to enhance performance and durability in solution‐processed halide perovskite electronics K Sim, T Nakao, M Sasase, S Iimura, J Kim, H Hosono Small 18 (31), 2202298, 2022 | 8 | 2022 |
Transition metal-doped Ru nanoparticles loaded on metal hydrides for efficient ammonia synthesis from first principles T Nakao, T Tada, H Hosono The Journal of Physical Chemistry C 124 (2), 1529-1534, 2019 | 7 | 2019 |
The key indicator for the control of metal particle sizes on supports from first-principles and experimental observation T Nakao, T Tada, M Kitano, M Sasase, H Hosono The Journal of Physical Chemistry C 120 (38), 21879-21887, 2016 | 6 | 2016 |