東京工科大学工学部応用化学科有機合成化学研究室
14, “be-ta-Amination of Saturated Nitriles through Palladium-Catalyzed Dehydrogenation/1,4-Addition/Re-dehydrogenation”
Satoshi Ueno, Ryohei Maeda, Shohei Yasuoka, and Ryoichi Kuwano, Chem. Lett., 42, 40–42 (2013).
13, “Synthesis of 4-Quinolones through Nickel-Catalyzed Intramolecular Amination on the be-ta-Carbon of o-(N-Alkylamino)propiophenones”
Satoshi Ueno, Ryosuke Shimizu, Ryohei Maeda, Ryoichi Kuwano, Synlett, 23, 1639–1642 (2012).
12, “Intramolecular SN’-Type Aromatic Substitution of Benzylic Carbonates at their Para-Position”
Satoshi Ueno, Sadakazu Komiya, Takeshi Tanaka, and Ryoichi Kuwano, Org. Lett., 14, 338–341 (2012).
11, "Transformation of alpha-Substituted Propanols to gamma-Amino Alcohols through Nickel-Catalyzed Amination on the Terminal gamma-Carbon of Propanols"
Satoshi Ueno, Kazumi Usui, and Ryoichi Kuwano, Synlett, 1303–1307 (2011).
10, “Palladium-Catalyzed [4+2] Cycloaddition of o-(Silylmethyl)benzyl Esters with Ketones: An Equivalent to Oxo-Diels–Alder Reaction of o-Xylylenes”
Satoshi Ueno, Masakazu Ohtsubo, and Ryoichi Kuwano, Org. Lett., 12, 4332–4334 (2010).
7, “Unique Effect of Coordination of an Alkene Moiety in Products on Ruthenium-Catalyzed Chemoselective C–H Alkenylation”
Satoshi Ueno, Takuya Kochi, Naoto Chatani, and Fumitoshi Kakiuchi, Org. Lett., 11, 855–858 (2009).
5, “Enantioselective Iridium-Catalyzed Allylic Amination of Ammonia and Convenient Ammonia Surrogates”
Mark J. Pouy, Andreas Leitner, Daniel J. Weix, Satoshi Ueno, and John F. Hartwig, Org. Lett., 9, 3949–3952 (2007).
3, “Regioselective Alkenylation of Aromatic Ketones with Alkenylboronates Using a RuH2(CO)(PPh3)3-Catalyst via Carbon–Hydrogen Bond Cleavage”
Satoshi Ueno, Naoto Chatani, and Fumitoshi Kakiuchi, J. Org. Chem., 72, 3600–3602 (2007).
2, “Direct Observation of the Oxidative Addition of the Aryl Carbon–Oxygen Bond to a Ruthenium Complex and Consideration of the Relative Reactivity between Aryl Carbon–Oxygen and Aryl Carbon–Hydrogen Bonds”
Satoshi Ueno, Eiichiro Mizushima, Naoto Chatani, and Fumitoshi Kakiuchi, J. Am. Chem. Soc., 128, 16516–16517 (2006).
学術雑誌等又は商業誌における解説、総説
1, “Catalysts for the Fine Chemical Synthesis: The RuH2(CO)(PPh3)3-Catalyzed Alkylation, Alkenylation, and Arylation of Aromatic Ketones via Carbon–Hydrogen Bond Cleavage”
Kakiuchi, F.; Ueno, S.; Chatani, N. Roberts, S. M. Ed., Wiley: West Sussex; pp 14–21 (2004). 出版日:2004年10月
2, “レアメタル便覧 第22章 化学工業におけるレアメタル i. 付加反応2(炭素–ヘテロ原子結合生成)”
上野 聡,桑野良一, 監修・編集代表 足立吟也,発行 丸善株式会社,pp III-400–III-405 (2011). 出版日:2011年1月
解説
1, “化学の要点シリーズ6、コラム 有機金属化学創薬における化合物探索法を大きく変えた触媒反応:Buchwald–Hartwigアミノ化とエーテル化反応”
上野 聡, 著者 垣内史敏,編集 日本化学会,共立出版,pp 168–169 (2013). 出版日:2013年1月
紀要
1, “Nickel-Catalyzed C–C and C–N Bond Formation at the be-ta-Position of Ethyl Ketones: a Sequential Dehydrogenation–1,4-Addition–Dehydrogenation”
Ueno, S.; Usui, K.; Shimizu, R.; Kuwano, R.,, Kyushu University Global-COE Program Science for Future Molecular Systems Journal, 2011, 4, 12.