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中尾琢哉 研究業績一覧 (35件)
論文
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Yihao Jiang,
Ryu Takashima,
Takuya Nakao,
Masayoshi Miyazaki,
Yangfan Lu,
Masato Sasase,
Yasuhiro Niwa,
Hitoshi Abe,
Masaaki Kitano,
Hideo Hosono.
Boosted Activity of Cobalt Catalysts for Ammonia Synthesis with BaAl2O4–xHy Electrides,
J. Am. Chem. Soc.,
Vol. 145,
pp. 10669–10680,
Apr. 2023.
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Hironobu Sugiyama,
Takuya Nakao,
Masayoshi Miyazaki,
Hitoshi Abe,
Yasuhiro Niwa,
Masaaki Kitano,
Hideo Hosono.
Low-temperature Methanol Synthesis by a Cu-loaded LaH2+x Electride,
ACS Catal.,
Vol. 12,
pp. 12572-12581,
Oct. 2022.
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Kihyung Sim,
Takuya Nakao,
Masato Sasase,
Soshi Iimura,
Junghwan Kim,
Hideo Hosono.
18-Crown-6 Additive to Enhance Performance and Durability in Solution-Processed Halide Perovskite Electronics,
Small,
Wiley,
p. 2202298,
July 2022.
公式リンク
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Masayoshi Miyazaki,
Kiya Ogasawara,
Takuya Nakao,
Masato Sasase,
Masaaki Kitano,
Hideo Hosono.
Hexagonal BaTiO(3–x)Hx Oxyhydride as a Water-Durable Catalyst Support for Chemoselective Hydrogenation,
Journal of the American Chemical Society,
Vol. 144,
No. 14,
pp. 6453-6464,
Apr. 2022.
公式リンク
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杉山博信,
中尾琢哉,
北野政明,
細野秀雄.
希土類水素化物担持Cu触媒上での低温メタノール合成の作動機構解明,
触媒,
Vol. 64,
pp. 42-44,
Mar. 2022.
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Kiya Ogasawara,
Takuya Nakao,
Kazuhisa Kishida,
Tian-Nan Ye,
Yangfan Lu,
Hitoshi Abe,
Yasuhiro Niwa,
Masato Sasase,
Masaaki Kitano,
Hideo Hosono.
Ammonia Decomposition over CaNH-Supported Ni Catalysts via an NH²⁻Vacancy-Mediated Mars-van Krevelen Mechanism,
ACS Catal.,
11,
11005–11015,
Aug. 2021.
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Takuya Nakao,
Kiya Ogasawara,
Masaaki Kitano,
Satoru Matsuishi,
Peter V.Sushko,
Hideo Hosono.
Ship-in-a-Bottle Synthesis of High Concentration of N₂ Molecules in a Cage-Structured Electride,
J. Phys. Chem. Lett.,
Vol. 12,
pp. 1295-1299,
Jan. 2021.
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Kayato Ooya,
Jiang Li,
Keiga Fukui,
Soshi Iimura,
Takuya Nakao,
Kiya Ogasawara,
Masato Sasase,
Hitoshi Abe,
Yasuhiro Niwa,
Masaaki Kitano,
Hideo Hosono.
Ruthenium Catalysts Promoted by Lanthanide Oxyhydrides with High Hydride-IonMobility for Low-Temperature Ammonia Synthesis,
Advanced Energy Materials,
Vol. 11,
p. 2003723,
Dec. 2020.
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Masashi Hattori,
Shinya Iijima,
Takuya Nakao,
Hideo Hosono,
Michikazu Hara.
Solid solution for catalytic ammonia synthesis from nitrogen and hydrogen gases at 50C,
Nature Communications,
11,
2001-1-8,
Apr. 2020.
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Takuya Nakao,
Tomofumi Tada,
HIDEO HOSONO.
Transition Metal-doped Ru Nanoparticles Loaded on Metal Hydrides for Efficient Ammonia Synthesis from First Principles,
The Journal of Physical Chemistry C,
vol. 124,
no. 2,
pp. 1529-1534,
Dec. 2019.
公式リンク
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Tiannan Ye,
Yangfan Lu,
Zewen Xiao,
Jiang Li,
Takuya Nakao,
Hitoshi Abe,
Yasuhiro Niwa,
Masaaki Kitano,
Tomofumi Tada,
Hideo Hosono.
Palladium-bearing intermetallic electride as an efficient and stable catalyst for Suzuki cross-coupling reactions,
Nature Communications,
Vol. 10,
pp. 5653,
Dec. 2019.
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Takuya Nakao,
Tomofumi Tada,
HIDEO HOSONO.
First-Principles and Microkinetic Study on the Mechanism for Ammonia Synthesis Using Ru-Loaded Hydride Catalyst,
The Journal of Physical Chemistry C,
vol. 124,
no. 3,
pp. 2070-2078,
Dec. 2019.
公式リンク
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Kazuhisa Kishida,
Masaaki Kitano,
Yasunori Inoue,
Masato Sasase,
Takuya Nakao,
Tomofumi Tada,
Hitoshi Abe,
Yasuhiro Niwa,
Toshiharu Yokoyama,
Michikazu Hara,
Hideo Hosono.
Large Oblate Hemispheroidal Ruthenium Particles Supported on Calcium Amide as Efficient Catalysts for Ammonia Decomposition,
Chem. Eur. J.,
Vol. 24,
pp. 7976-7984,
Mar. 2018.
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Ye Tiannan,
Yangfan Lu,
jiang li,
Takuya Nakao,
Hongsheng Yang,
Tomofumi Tada,
Masaaki Kitano,
HIDEO HOSONO.
Copper-Based Intermetallic Electride Catalyst for Chemoselective Hydrogenation Reactions,
J. AM. CHEM. SOC.,
vol. 139,
no. 47,
pp. 17089–17097,
Nov. 2017.
公式リンク
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Hitoshi Abe,
Yasuhiro Niwa,
Masaaki Kitano,
yasunori inoue,
Masato Sasase,
Takuya Nakao,
Tomofumi Tada,
Toshiharu Yokoyama,
MICHIKAZU HARA,
HIDEO HOSONO.
Anchoring Bond between Ru and N Atoms of Ru/Ca2NH Catalyst: Crucial for the High Ammonia Synthesis Activity,
The Journal of Physical Chemistry C,
vol. 121,
no. 38,
pp. 20900–20904,
Sept. 2017.
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Takuya Nakao,
Tomofumi Tada,
Masaaki Kitano,
Masato Sasase,
HIDEO HOSONO.
The Key Indicator for the Control of Metal Particle Sizes on Supports from First-Principles and Experimental Observation,
J. Phys. Chem. C,
American Chemical Society,
Vol. 120,
pp. 21879–21887,
Aug. 2016.
公式リンク
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Masaaki Kitano,
yasunori inoue,
Hiroki Ishikawa,
Kyosuke Yamagata,
Takuya Nakao,
Tomofumi Tada,
Satoru Matsuishi,
Toshiharu Yokoyama,
MICHIKAZU HARA,
HIDEO HOSONO.
Essential role of hydride ion in ruthenium-based ammonia synthesis catalysts,
Chem. Sci.,
Vol. 7,
pp. 4036-4043,
Apr. 2016.
公式リンク
国際会議発表 (査読有り)
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Takuya Nakao,
Tomofumi Tada,
Hideo Hosono.
Ammonia synthesis mechanism using Ru-loaded hydride catalyst from first principles,
Materials Research Meeting 2019,
Dec. 2019.
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Takuya Nakao,
Tomofumi Tada,
Hideo Hosono.
Ammonia synthesis mechanism using Ru/Ca2NH catalyst; A first-principles study,
The 11th International Conference on the Science and Technology for Advanced Ceramics (STAC11),
July 2019.
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Takuya Nakao,
Tomofumi Tada,
HIDEO HOSONO.
First-principles study on Ru-based intermetallic alloy loaded on hydrides for efficient ammonia synthesis,
E-MRS 2017 Fall Meeting,
Sept. 2017.
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Takuya Nakao,
Tomofumi Tada,
Masaaki Kitano,
Masato Sasase,
Hideo Hosono.
First-Principles and Experimental Study on the Descriptors for Controlling Metal Particle Sizes on Supports,
The 10th International Conference on the Science and Technology for Advanced Ceramic (STAC-10),
Aug. 2017.
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Tomofumi Tada,
Takuya Nakao,
Hideo Hosono.
First-Principles Study on Essential role of Metal Hydrides for Ammonia Synthesis,
The 10th International Conference on the Science and Technology for Advanced Ceramic (STAC-10),
Aug. 2017.
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Masaaki Kitano,
yasunori inoue,
Takuya Nakao,
Tomofumi Tada,
MICHIKAZU HARA,
HIDEO HOSONO.
Ammonia synthesis over Ru-loaded Ca2NH: Effect of H- ion on the catalytic performance,
13th European Congress on Catalysis (EUROPACAT 2017),
Aug. 2017.
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Takuya Nakao,
Tomofumi Tada,
Masaaki Kitano,
Masato Sasase,
HIDEO HOSONO.
Guideline for the control of Ru particles sizes on supports based on the chemical bond between metal and support's anion,
13th European Congress on Catalysis (EUROPACAT 2017),
Aug. 2017.
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Takuya Nakao,
Tomofumi Tada,
Masaaki Kitano,
HIDEO HOSONO.
Catalytic Role of Anionic Electron and H- in Ammonia Synthesis using Ru-Loaded [Ca2N]+H- from First-Principles,
2016 MRS Fall Meeting & Exibit,
Nov. 2016.
国内会議発表 (査読有り)
国際会議発表 (査読なし・不明)
国内会議発表 (査読なし・不明)
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中尾琢哉,
多田朋史,
北野政明,
細野秀雄.
第一原理計算を用いた Ru/[Ca2N]+H−触媒による アンモニア合成の反応経路解析,
第120回触媒討論会,
Sept. 2017.
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中尾琢哉,
多田朋史,
北野政明,
細野秀雄.
第一原理計算による[Ca2N]+H−担体の表面水素欠陥生成およびRuへの電子注入効果の解析,
新学術領域π造形科学第三回若手会,
Nov. 2016.
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中尾琢哉,
北野政明,
多田朋史,
原亨和,
細野秀雄.
Ru担持[Ca2N]+H-触媒を用いたアンモニア合成における担体表面水素欠陥の働きに関する第一原理計算,
第118回触媒討論会,
Sept. 2016.
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中尾琢哉,
多田朋史,
北野政明,
細野秀雄.
担体上のRuの粒子サイズに対するRuと担体表面原子との化学結合による影響,
日本セラミックス協会 2016年年会,
Mar. 2016.
学位論文
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Role of Ru-anion interaction on the support surface in synthesis and decomposition of ammonia,
Thesis,
Doctor (Engineering),
Tokyo Institute of Technology,
2020/03/26,
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Role of Ru-anion interaction on the support surface in synthesis and decomposition of ammonia,
Exam Summary,
Doctor (Engineering),
Tokyo Institute of Technology,
2020/03/26,
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Role of Ru-anion interaction on the support surface in synthesis and decomposition of ammonia,
Outline,
Doctor (Engineering),
Tokyo Institute of Technology,
2020/03/26,
-
Role of Ru-anion interaction on the support surface in synthesis and decomposition of ammonia,
Summary,
Doctor (Engineering),
Tokyo Institute of Technology,
2020/03/26,
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