熊本大学 産業ナノマテリアル研究所 工学部 材料・応用化学科/大学院自然科学教育部 材料・応用化学専攻 無機材料

発表論文

2014年

  • Watanabe, M.; Hagiwara, H.; Iribe, A.; Ogata, Y.; Shiomi, K.; Staykov, A.; Ida, S.; Tanaka, K.; Ishihara, T.: Spacer effects in metal-free organic dyes for visible-light-driven dye-sensitized photocatalytic hydrogen production. Journal of Materials Chemistry A 2014, 2, 12952-12961.
  • Thapa, A. K.; Pandit, B.; Paudel, H. S.; Thapa, R.; Ida, S.; Jasinski, J. B.; Sumanasekera, G. U.; Ishihara, T.: Polythiophene mesoporous birnessite-MnO2/Pd cathode air electrode for rechargeable Li-air battery. Electrochimica Acta 2014, 127, 410-415.
  • Tateishi, H.; Koinuma, M.; Miyamoto, S.; Kamei, Y.; Hatakeyama, K.; Ogata, C.; Taniguchi, T.; Funatsu, A.; Matsumoto, Y.: Effect of the electrochemical oxidation/reduction cycle on the electrochemical capacitance of graphite oxide. Carbon 2014, 76, 40-45.
  • Tateishi, H.; Koga, T.; Hatakeyama, K.; Funatsu, A.; Koinuma, M.; Taniguchi, T.; Matsumoto, Y.: Graphene oxide lead battery (GOLB). ECS Electrochemistry Letters 2014, 3, A19-A21.
  • Taniguchi, T.; Yokoi, H.; Nagamine, M.; Tateishi, H.; Funatsu, A.; Hatakeyama, K.; Ogata, C.; Ichida, M.; Ando, H.; Koinuma, M.; Matsumoto, Y.: Correlated optical and magnetic properties in photoreduced graphene oxide. Journal of Physical Chemistry C 2014, 118, 28258-28265.
  • Taniguchi, T.; Murakami, T.; Funatsu, A.; Hatakeyama, K.; Koinuma, M.; Matsumoto, Y.: Reversibly tunable upconversion luminescence by host-guest chemistry. Inorganic Chemistry 2014, 53, 9151-9155.
  • Tanaka, A.; Hatakeyama, K.; Oku, A.; Matsuzaki, K.; Saitou, N.; Yokoi, H.; Taniguchi, T.; Matsumoto, Y.; Hara, M.: Giant humidity dependence of conductivity in a single exfoliated titania nanosheet. Applied Physics Letters 2014, 104, 163106.
  • Ogata, C.; Koinuma, M.; Hatakeyama, K.; Tateishi, H.; Asrori, M. Z.; Taniguchi, T.; Funatsu, A.; Matsumoto, Y.: Metal permeation into multi-layered graphene oxide. Scientific Reports 2014, 4, 3647.
  • Ju, Y. W.; Jun, A.; Inoishi, A.; Ida, S.; Lim, T. H.; Kim, G.; Ishihara, T.: Growth of thin-film layered perovskite cathodes by pulsed laser deposition and their electrochemical studies in IT-SOFCs. Journal of the Electrochemical Society 2014, 161, F698-F702.
  • Ju, Y. W.; Hyodo, J.; Inoishi, A.; Ida, S.; Tohei, T.; So, Y. G.; Ikuhara, Y.; Ishihara, T.: Double columnar structure with a nanogradient composite for increased oxygen diffusivity and reduction activity. Advanced Energy Materials 2014, 4.
  • Ju, Y. W.; Hyodo, J.; Inoishi, A.; Ida, S.; Ishihara, T.: Ce(Mn,Fe)O2 dense film deposited on LaGaO3 electrolyte for dense anode of solid oxide fuel cells. International Journal of Hydrogen Energy 2014, 39, 20777-20782.
  • Jang, I. C.; Ida, S.; Ishihara, T.: Li utilization and cyclability of Li-O2 rechargeable batteries incorporating a mesoporous Pd/β-MnO2 air electrode. Electrochemistry 2014, 82, 267-272.
  • Jang, I. C.; Ida, S.; Ishihara, T.: Surface coating layer on li metal for increased cycle stability of Li-O2 batteries. Journal of the Electrochemical Society 2014, 161, A821-A826.
  • Ishihara, T.; Inoishi, A.; Ida, S.: Reversible solid state Fe-air rechargeable battery using LaGaO3 based oxide ion conducting electrolyte. Materials Science Forum 2014, 783-786, 1680-1685.
  • Ishihara, T.; Ida, S.: ICH2P-2014 Preface. International Journal of Hydrogen Energy 2014, 39, 20591.
  • Inoishi, A.; Sakai, T.; Ju, Y. W.; Ida, S.; Ishihara, T.: Improved cycle stability of Fe-air solid state oxide rechargeable battery using LaGaO3-based oxide ion conductor. Journal of Power Sources 2014, 262, 310-315.
  • Inoishi, A.; Sakai, T.; Ju, Y. W.; Ida, S.; Ishihara, T.: Effect of Ni/Fe ratio on the performance and stability of the Fe-air rechargeable battery using a La0.9Sr0.1Ga0.8Mg0.2O3 electrolyte. International Journal of Hydrogen Energy 2014, 39, 21352-21357.
  • Ikeda, Y.; Karim, M. R.; Takehira, H.; Matsui, T.; Hatakeyama, K.; Murashima, Y.; Taniguchi, T.; Koinuma, M.; Nakamura, M.; Matsumoto, Y.; Hayami, S.: Impaired proton conductivity of metal-doped graphene oxide. Bulletin of the Chemical Society of Japan 2014, 87, 639-641.
  • Ikeda, Y.; Karim, M. R.; Takehira, H.; Hatakeyama, K.; Matsui, T.; Taniguchi, T.; Koinuma, M.; Matsumoto, Y.; Hayami, S.: Hydrogen generation by graphene oxide alkylamine hybrids through photocatalytic water splitting. Chemistry Letters 2014, 43, 486-488.
  • Ida, S.; Takashiba, A.; Koga, S.; Hagiwara, H.; Ishihara, T.: Potential gradient and photocatalytic activity of an ultrathin p-n junction surface prepared with two-dimensional semiconducting nanocrystals. Journal of the American Chemical Society 2014, 136, 1872-1878.
  • Ida, S.; Koga, S.; Daio, T.; Hagiwara, H.; Ishihara, T.: Direct imaging of light emission centers in two-dimensional crystals and their luminescence and photocatalytic properties. Angewandte Chemie – International Edition 2014, 53, 13078-13082.
  • Ida, S.; Ishihara, T.: Recent progress in two-dimensional oxide photocatalysts for water splitting. Journal of Physical Chemistry Letters 2014, 5, 2533-2542.
  • Hyodo, J.; Tominaga, K.; Ju, Y. W.; Ida, S.; Ishihara, T.: Increased oxide ion diffusivity and surface exchange on Pr2NiO4 base oxide by Au dispersion. ECS Transactions 2014, 61, 123-129.
  • Hyodo, J.; Tominaga, K.; Ju, Y. W.; Ida, S.; Ishihara, T.: Electrical conductivity and oxygen diffusivity in Cu- and Ga-doped Pr2NiO4. Solid State Ionics 2014, 256, 5-10.
  • Hyodo, J.; Ida, S.; Ishihara, T.: Oxide ionic conductivity in Pr2(Ni, Cu, Ga)O4+δ-(Ce, Sm)O2-δ laminated film estimated with the Hebb-Wagner method. Solid State Ionics 2014, 262, 889-892.
  • Hong, J. E.; Xie, J.; Ida, S.; Ishihara, T.: Increased power density of solid oxide fuel cells using LaGaO3 film prepared by screen printing method with (Ba, La)CoO3-δ and Pr1.9 (Ni, Cu, Ga)O4+δ composite oxide cathode. Journal of the Electrochemical Society 2014, 161, F1118-F1123.
  • Hong, J. E.; Ida, S.; Ishihara, T.: Decreased sintering temperature of anode-supported solid oxide fuel cells with La-doped CeO2 and Sr- and Mg-doped LaGaO3 films by Co addition. Journal of Power Sources 2014, 259, 282-288.
  • Hong, J. E.; Ida, S.; Ishihara, T.: Effects of transition metal addition on sintering and electrical conductivity of La-doped CeO2 as buffer layer for doped LaGaO3 electrolyte film. Solid State Ionics 2014, 262, 374-377.
  • Hatakeyama, K.; Tateishi, H.; Taniguchi, T.; Koinuma, M.; Kida, T.; Hayami, S.; Yokoi, H.; Matsumoto, Y.: Tunable graphene oxide proton/electron mixed conductor that functions at room temperature. Chemistry of Materials 2014, 26, 5598-5604.
  • Hatakeyama, K.; Karim, M. R.; Ogata, C.; Tateishi, H.; Taniguchi, T.; Koinuma, M.; Hayami, S.; Matsumoto, Y.: Optimization of proton conductivity in graphene oxide by filling sulfate ions. Chemical Communications 2014, 50, 14527-14530.
  • Hatakeyama, K.; Karim, M. R.; Ogata, C.; Tateishi, H.; Funatsu, A.; Taniguchi, T.; Koinuma, M.; Hayami, S.; Matsumoto, Y.: Proton conductivities of graphene oxide nanosheets: Single, multilayer, and modified nanosheets. Angewandte Chemie – International Edition 2014, 53, 6997-7000.
  • Hagiwara, H.; Watanabe, M.; Daio, T.; Ida, S.; Ishihara, T.: Modification effects of meso-hexakis(pentafluorophenyl) [26]hexaphyrin aggregates on the photocatalytic water splitting. Chemical Communications 2014, 50, 12515-12518.
  • Guo, L.; Ida, S.; Takashiba, A.; Daio, T.; Teramae, N.; Ishihara, T.: Soft-templating method to synthesize crystalline mesoporous α-Fe2O3 films. New Journal of Chemistry 2014, 38, 1392-1395.
  • Guo, L.; Ida, S.; Hagiwara, H.; Daio, T.; Ishihara, T.: Direct soft-templating route to crystalline mesoporous transition-metal oxides. Colloids and Surfaces A: Physicochemical and Engineering Aspects 2014, 451, 136-143.
  • Guo, L.; Ida, S.; Daio, T.; Hagiwara, H.; Ishihara, T.: In situ carbonization of a soft-template to directly synthesize crystalline mesoporous metal oxides with high surface areas. New Journal of Chemistry 2014, 38, 5846-5855.
  • Funatsu, A.; Tateishi, H.; Hatakeyama, K.; Fukunaga, Y.; Taniguchi, T.; Koinuma, M.; Matsuura, H.; Matsumoto, Y.: Synthesis of monolayer platinum nanosheets. Chemical Communications 2014, 50, 8503-8506.