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■京化■京都大学理学部化学科・京都大学大学院理学研究科学専攻

前里 光彦(准教授)

専門分野
物性化学、物性物理
研究テーマ
  1. 機能性分子性物質の開発と物性研究
    (超伝導体、スピン液体、磁性伝導体)
  2. 一軸性ひずみ・超高圧による低次元有機伝導体の物性制御
代表的な論文
  1. The room-temperature superionic conductivity of silver iodide nanoparticles under pressure
    T. Yamamoto, M. Maesato, N. Hirao, S. Kawaguchi, S. Kawaguchi, Y. Ohishi, Y. Kubota, H. Kobayashi, H. Kitagawa
    J. Am. Chem. Soc. 139, 1392-1395 (2017).
  2. Mixed-valence compounds with ghost-leg-type sheets
    R. Hashiguchi, K. Otsubo, M. Maesato, K. Sugimoto, A. Fujiwara, H. Kitagawa
    Angew. Chem. Int. Ed. 2017, 56(14), 3838-3841.
  3. Use of halogen bonding in a molecular solid solution to simultaneously control spin and charge
    G. Kawaguchi, M. Maesato, T. Komatsu, T. Imakubo, A. Kiswandhi, D. Graf, H. Kitagawa
    Chem. Mater. 28, 7276-7286 (2016).
  4. Pressure-tuned exchange coupling of quantum spin liquid in molecular triangular lattice κ-(ET)2Ag2(CN)3
    Y. Shimizu, T. Hiramatsu, M. Maesato, A. Otsuka, H. Yamochi, A. Ono, M. Itoh, M. Yoshida, M. Takigawa, Y. Yoshida, G. Saito
    Phys. Rev. Lett. 117, 107203-1-6 (2016).
  5. Interplay between spin-density wave and 3d local moments with random exchange in a molecular conductor
    G. Kawaguchi, M. Maesato, T. Komatsu, T. Imakubo, H. Kitagawa
    Phys. Rev. B 93, 075124-1-6 (2016).
  6. Spin-disordered quantum phases in a quasi-one-dimensional triangular lattice
    Y. Yoshida, H. Ito, M. Maesato, Y. Shimizu, H. Hayama, T. Hiramatsu, Y. Nakamura, H. Kishida, T. Koretsune, C. Hotta, G. Saito
    Nature Physics 11, 679-683 (2015).
  7. Unconventional magnetic and resistive hysteresis in an iodine-bonded molecular conductor
    G. Kawaguchi, M. Maesato, T. Komatsu, H. Kitagawa, T. Imakubo, A. Kiswandhi, D. Graf, J. S. Brooks
    Angew. Chem. Int. Ed. 2015, 54(35), 10169-10172.
  8. Spin–charge coupling in the molecular conductor (DIETSe)2FeBr4
    M. Maesato, Y. Furushima, G. Saito, H. Kitagawa, T. Imakubo, A. Kiswandhi, D. Graf, J. S. Brooks
    J. Phys. Soc. Jpn. 82, 043704-1-4 (2013).
  9. Anomalous magnetoresistance and hidden spin canting in
    (DIETSe)2MCl4 (M=Fe, Ga)
    M. Maesato, T. Kawashima, G. Saito, T. Shirahata, M. Kibune, T. Imakubo
    Phys. Rev. B 87, 085117-1-8 (2013). “Editors' Suggestion”
  10. Spin-flop switching and memory in a molecular conductor
    M. Maesato, T. Kawashima, Y. Furushima, G. Saito, H. Kitagawa, T. Shirahata, M. Kibune, T. Imakubo
    J. Am. Chem. Soc. 134, 17452-17455 (2012).
  11. Uniaxial strain effects on Mott and superconducting transitions in
    κ-(ET)2Cu2(CN)3
    Y. Shimizu, M. Maesato, G. Saito
    J. Phys. Soc. Jpn. 80, 074702-1-7 (2011).
  12. A two-dimensional organic metal based on fullerene
    D.V. Konarev, S.S. Khasanov, A. Otsuka, M. Maesato, G. Saito, R.N. Lyubovskaya
    Angew. Chem. Int. Ed. 2010, 49(28), 4829-4832.
  13. Pressure-induced superconductivity and Mott transition in spin-liquid
    κ-(ET)2Cu2(CN)3 probed by 13C-NMR
    Y. Shimizu, H. Kasahara, T. Furuta, K. Miyagawa, K. Kanoda, M. Maesato, G. Saito
    Phys. Rev. B 81, 224508-1-5 (2010).
  14. Fabrication of Two-Dimensional Polymer Arrays: Template Synthesis of Polypyrrole between Redox-Active Coordination Nanoslits
    N. Yanai, T. Uemura, M. Ohba, Y. Kadowaki, M. Maesato, M. Takenaka, S. Nishitsuji, H. Hasegawa, S. Kitagawa
    Angew. Chem. Int. Ed. 2008, 47(51), 9883–9886.
  15. Phase transition from Mott insulating phase into charge ordering phase with molecular deformation in the charge transfer salts
    κ-(BEDT-TTF)4[M(CN)6] [N(C2H5)4]・2H2O (M = CoIII and FeIII)
    A. Ota, L. Ouahab, S. Golhen, Y. Yoshida, M. Maesato, G. Saito, R. Swietlik
    Chem. Mater. 19, 2455-2462 (2007).
  16. New organic conductors based on dibromo- and diiodo-TSeFs with magnetic and non-magnetic MX4 counter anions (M = Fe, Ga; X = Cl, Br)
    T. Shirahata, M. Kibune, M. Maesato, T. Kawashima, G. Saito, T. Imakubo
    J. Mater. Chem. 16, 3381-3390 (2006).
  17. Emergence of inhomogeneous moments from spin liquid in the triangular-lattice Mott insulator κ-(ET)2Cu2(CN)3
    Y. Shimizu, K. Miyagawa, K. Kanoda, M. Maesato, G. Saito
    Phys. Rev. B 73, 140407(R)-1-4 (2006).
  18. Spin liquid state in an organic Mott insulator with a triangular lattice
    Y. Shimizu, K. Miyagawa, K. Kanoda, M. Maesato, G. Saito
    Phys. Rev. Lett. 91, 107001-1-4 (2003).
  19. Crystal structure and electronic band structure of the organic superconductor α-(BEDT-TTF)2NH4Hg(SCN)4 under uniaxial strain
    R. Kondo, S. Kagoshima, M. Maesato
    Phys. Rev. B 67, 134519-1-6 (2003).
  20. Control of the electronic properties of organic conductors
    α-(BEDT-TTF)2MHg(SCN)4 (M=K, NH4) by the uniaxial strain method
    M. Maesato, Y. Kaga, R. Kondo, S. Kagoshima
    Phys. Rev. B 64, 155104-1-8 (2001).
  21. Uniaxial strain method for soft crystals: application to the control of the electronic properties of organic conductors
    M. Maesato, Y. Kaga, R. Kondo, S. Kagoshima
    Rev. Sci. Instrum. 71, 176-181 (2000).
略歴
2000    東京大学 大学院総合文化研究科 広域科学専攻 博士課程修了
2000-2007  京都大学 大学院理学研究科 化学専攻 助手
2007-2013  京都大学 大学院理学研究科 化学専攻 助教
2013-現在  京都大学 大学院理学研究科 化学専攻 准教授

2007-2007  仏国レンヌ大学 客員研究員
2011-2011  米国国立強磁場研究所 客員研究員
2011-2012  日本物理学会 領域7 領域運営委員
2016-    日本化学会近畿支部 幹事
連絡先
部屋番号 理学部6号館558号室
電話番号 075-753-4036
電子メール maesato + @kuchem.kyoto-u.ac.jp
リンク
固体物性化学分科紹介(京化サイト内)
固体物性化学のホームページ

(最終更新日;2017年03月24日)

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