九州大学 研究者情報
論文一覧
田中 直樹(たなか なおき) データ更新日:2021.06.23

助教 /  工学研究院 応用化学部門


原著論文
1. Ryohei Yamaguchi, Taiki Ishii, Masamichi Matsumoto, Borah Angana, Naoki Tanaka, Kaito Oda, Motohiro Tomita, Takanobu Watanabe, Tsuyohiko Fujigaya, Thermal Deposition Method for p–n Patterning of Carbon Nanotube Sheets for Planar-type Thermoelectric Generator, Journal of Materials Chemistry A, 2021.05.
2. Yuki Motoishi, Naoki Tanaka, Tsuyohiko Fujigaya, Synthesis and Anion Conductivity of Anion-Exchange Membrane with Fused Expanded Pyridinium Structure as Cationic Moiety, Chemistry Letters, 2021.05.
3. Berthold Wegner, Dominique Lungwitz, Ahmed E. Mansour, Claudia E. Tait, Naoki Tanaka, Tianshu Zhai, Steffen Duhm, Michael Forster, Jan Behrends, Yoshiaki Shoji, Andreas Opitz, Ullrich Scherf, Emil J. W. List‐Kratochvil, Takanori Fukushima, Norbert Koch, An Organic Borate Salt with Superior p‐Doping Capability for Organic Semiconductors, Advanced Science, doi.org/10.1002/advs.202001322, 7, 2001322, 2020.07.
4. Beatrice Adelizzi, Pongphak Chidchob, Naoki Tanaka, Brigitte A. G. Lamers, Stefan C. J. Meskers, Soichiro Ogi, Anja R. A. Palmans, Shigehiro Yamaguchi, E. W. Meijer, Long-Lived Charge-Transfer State from B–N Frustrated Lewis Pairs Enchained in Supramolecular Copolymers, Journal of the American Chemical Society, 2020.09, 近年開発が盛んに行われている機能性超分子ポリマーの作製に向けて、今回新たにフラストレイテドルイスペアーを組み込んだ超分子共重合体を作製し、その特異な光学特性を明らかにした。また共重合体の微細構造を分光測定、理論化学計算から考察し、集積体形成のメカニズムを評価した。.
5. Kaito Kanahashi, Naoki Tanaka, Yoshiaki Shoji, Mina Maruyama, Il Jeon, Kenji Kawahara, Masatou Ishihara, Masataka Hasegawa, Hiromichi Ohta, Hiroki Ago, Yutaka Matsuo, Susumu Okada, Takanori Fukushima, Taishi Takenobu , Formation of environmentally stable hole-doped graphene films with instantaneous and high-density carrier doping via a boron-based oxidant, npj 2D Materials and Applications, 10.1038/s41699-019-0090-x, 3, 7, 2019.02.
6. Hirofumi Matsuoka, Kaito Kanahashi, Naoki Tanaka, Yoshiaki Shoji,* Lain-Jong Li, Jiang Pu, Hiroshi Ito, Takanori Fukushima, Taishi Takenobu, Chemical hole doping into large-area transition metal dichalcogenide monolayers using boron-based oxidant, Japanese Journal of Applied Physics, 10.7567/JJAP.57.02CB15, 57, 2S2, 02CB15, 2018.01.
7. Naoki Tanaka, Yoshiaki Shoji, Daisuke Hashizume, Manabu Sugimoto, Takanori Fukushima,, Formation of an Isolable Divinylborinium Ion through Twofold 1,2-Carboboration between a Diarylborinium Ion and Diphenylacetylene, Angewandte Chemie, 10.1038/ncomms12704, 56, 19, 5312-5316, 2017.03.
8. Kazuma Funahashi, Naoki Tanaka, Yoshiaki Shoji,* Naoki Imazu, Ko Nakayama, Kaito Kanahashi, Hiroyuki Shirae, Suguru Noda, Hiromichi Ohta, Takanori Fukushima, Taishi Takenobu, Highly air- and moisture-stable hole-doped carbon nanotube films achieved by a boron-based oxidant, Applied Physics Express, 10.7567/APEX.10.035101, 10, 3, 035101, 2017.02.
9. Yoshiaki Shoji, Yasuhiro Ikabata, Qi Wang, Daisuke Nemoto, Atsushi Sakamoto, Naoki Tanaka, Junji Seino, Hiromi Nakai, Takanori Fukushima*, Unveiling a new aspect of simple arylboronic esters: long-lived room-temperature phosphorescence from heavy-atom-free molecules, Journal of the American Chemical Society, 10.1021/jacs.6b11984, 139, 7, 2728-2733, 2017.01.
10. Yoshiaki Shoji, Naoki Tanaka, Sho Muranaka, Naoki Shigeno, Haruka Sugiyama, Kumiko Takenouchi, Fatin Hajjaj, Takanori Fukushima, Boron-mediated sequential alkyne insertion and C–C coupling reactions affording extended π-conjugated molecules, Nature Communications, 10.1038/ncomms12704, 7, 12704, 2016.07.
11. Naoki Tanaka, Yoshiaki Shoji, Takanori Fukushima , Convenient Route to Monocarba-closo-dodecaborate Anion, Organometallics, 10.1021/acs.organomet.6b00309, 35, 11, 2022-2025, 2016.06.
12. Yoshiaki Shoji, Naoki Tanaka, Koichiro Mikami, Masanobu Uchiyama, Takanori Fukushima, A two-coordinate boron cation featuring C–B+–C bonding, Nature Chemistry, 10.1038/nchem.1948, 6, 498-503, 2014.04.
13. Yoshiaki Shoji, Naoki Tanaka, Daisuke Hashizume, Takanori Fukushima, The molecular and electronic structures of a thioaroyl cation formed by borinium ion-mediated C=S double bond cleavage of CS2, Chemical Communications, 10.1039/C5CC05645D, 51, 13342-13345, 2015.07.

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