MORIMOTO Hideyuki

Division of Materials and Environment(Department of Chemical Engineering)Professor
Last Updated :2026/07/04

■Researcher basic information

Researcher

  • Name

    MORIMOTO Hideyuki

Affiliation

  • Division of Materials and Environment(Department of Chemical Engineering), Professor

Profile and Settings

  • Name

    Morimoto, Hideyuki

Foreign language

  • Use in presentation

    English
  • Use in publication

    English

Affiliation

  • Gunma University, Associate Professor, Associate prof lecturer lv

Affiliation

  • 所属情報

    Graduate School of Science and Technology
  • Job title

    Associate Professor

Degree

  • Doctor(Enfgineering)

Professional Memberships

  • url
  • url
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  • url

■Research activity information

Research Interests

  • Electrochemistry

Papers

  • Lithium-ion Conductors Prepared by Low-temperature Heat Treatment of Amorphous Materials with the Composition of High-Al Substituted Li1+xAlxGe2−x(PO4)3 (x = 1.0) for All-solid-state Batteries, N. Shinada, T. Shimodo, R. Kurihara, and H. Morimorto, No, Yes, Yes, Feb. 2025, Electrochemistry, 93, 2, 027004
  • Properties of Carbon-coated SiO-C Pelletized Negative Electrodes for All-solid-state Batteries, N. Ishii, N. Kakinuma, and H. Morimoto, No, Yes, Yes, Feb. 2024, Electrochemistry, 92, (1), 017006
  • Lithium Ion Conductivities of Solid Electrolytes Prepared by Low-temperature HeatTreatment of Amorphous Materials in the Li2O-Al2O3-GeO2-P2O5 System for All-solid-state Batteries, Ryohei Kurihara, Nana Shinada, and Hideyuki Morimoto, No, Yes, Yes, Mar. 2023, Electrochemistry, 91, 3, 037010, 037014
  • Properties of Carbon-coated SiO-C Negative Electrodes for Sulfide-type All-solid-state Batteries, Naoto OKUZAWA, Yuki YAMAMURA, Naoya ISHII, and Hideyuki MORIMOTO, No, Yes, Yes, Feb. 2022, Electrochemistry, 90, 2, 027003, 027008
  • Ionic Conductivity and Thermal Stability of Li2O-Li2S-P2S5 Oxysulfide Glass, Hirofumi Tsukasaki, Hideyuki Morimoto, Shigeo Mori, No, No, Apr. 2020, Solid State Ionics, 347, 115267
  • High-Energy X-Ray Compton Scattering Imaging of 18650-Type Lithium-Ion Battery Cell,, Kosuke Suzuki, Ari-Pekka Honkanen, Naruki Tsuji, Kirsi Jalkanen, Jari Koskinen, Hideyuki Morimoto, Daisuke Hiramoto, Ayumu Terasaka, Hasnain Hafiz, Yoshiharu Sakurai, Mika Kanninen, Simo Huotari, Arun Bansil , Hiroshi Sakurai and Bernardo Barbiellini, No, No, Jul. 2019, Condens. Matter, 4, 66
  • Thermal behavior and microstructure of the Li3PS4-ZnO composite electrolyte, Hirofumi Tsukasaki, Hideyuki Morimoto, Shigeo Mori, No, No, Jul. 2019, J. Power Sources, 436, 226865
  • Thermal behavior and microstructures of cathodes for liquid electrolyte-based lithium batteries, H. Tsukasaki, W. Fukuda, H. Morimoto, T. Arai, S. Mori, A. Hayashi, and M. Tatsumisago, No, No, Aug. 2018, Sci.Rep, 8, 15613
  • Direct observation of a non-crystalline state of Li2S-P2S5 solid electrolytes, Tsukasaki, Hirofumi; Mori, Shigeo; Morimoto, Hideyuki; Hayashi, Akitoshi; Tatsumisago, Masahiro, No, Jul. 2017, Scientific Reports
  • Analysis of structural and thermal stability in the positive electrode for sulfide-based all-solid-state lithium batteries, Tsukasaki, Hirofumi; Otoyama, Misae; Mori, Yota; Mori, Shigeo; Morimoto, Hideyuki; Hayashi, Akitoshi; Tatsumisago, Masahiro, No, Nov. 2017, JOURNAL OF POWER SOURCES
  • Charge/discharge Behavior of Triclinic LiTiOPO4 Anode Materials for Lithium Secondary Batteries, Morimoto, Hideyuki; Ito, Daigo; Ogata, Yoichiro; Suzuki, Toshimasa; Sakamaki, Kenta; Tsuji, Takahiro; Hirukawa, Masatoshi; Matsumoto, Atsuyuki; Tobishima, Shin-ichi, Yes, Nov. 2016, ELECTROCHEMISTRY
  • Characteristics of High-capacity SiO-C Anodes Containing Olivine-type LiMgPO4 Compounds for Lithium Secondary Batteries, Morimoto, Hideyuki; Higuchi, Daiki; Tobishima, Shin-ichi, Yes, Oct. 2015, ELECTROCHEMISTRY
  • Effects of organic silicon compounds as additives on charge discharge cycling efficiencies of lithium in nonaqueous electrolytes for rechargeable lithium cells, Yanagisawa, Ryota; Endo, Hisayuki; Unno, Masafumi; Morimoto, Hideyuki; Tobishima, Shin-ichi, No, Nov. 2014, JOURNAL OF POWER SOURCES
  • Lithium Ion Conductivities of NASICON-type Li1+xAlxTi2-x(PO4)(3) Solid Electrolytes Prepared from Amorphous Powder Using a Mechanochemical Method, Morimoto, Hideyuki; Hirukawa, Masatoshi; Matsumoto, Atsuyuki; Kurahayashi, Takashi; Ito, Nobukiyo; Tobishima, Shin-ichi, Yes, Oct. 2014, ELECTROCHEMISTRY
  • Effects of nonaqueous electrolyte solutions mixed with carbonate-modified siloxane on charge-discharge performance of negative electrodes for secondary lithium batteries, Takei, Yasuhiro; Takeno, Kazuhiko; Morimoto, Hideyuki; Tobishima, Shin-ichi, No, Apr. 2013, JOURNAL OF POWER SOURCES
  • Preparation of lithium ion conducting solid electrolyte of NASICON-type Li1+xAlxTi2-x(PO4)(3) (x=0.3) obtained by using the mechanochemical method and its application as surface modification materials of LiCoO2 cathode for lithium cell, Morimoto, Hideyuki; Awano, Hiroyuki; Terashima, Junpei; Shindo, Yohei; Nakanishi, Shinji; Ito, Nobukiyo; Ishikawa, Kiyotaka; Tobishima, Shin-ichi, Yes, Oct. 2013, JOURNAL OF POWER SOURCES
  • Electrochemical Properties of High-Capacity SiO-C Anodes Prepared by the Addition of Iron Oxide Powder for Lithium Secondary Batteries, H. Morimoto, T. Sudo, H. Watanabe, and S. Tobishima, Yes, Oct. 2012, Electrochemistry
  • Charge-discharge Properties of LiCoO2 Electrodes Modified by Olivine-type Compounds of LiMgPO4 for Lithium Secondary Batteries, H. Morimoto, H. Awano, J. Terashima, S. Nakanishi, Y. Hirama, K. Ishikawa, and S. Tobishima, Yes, Apr. 2012, J. Power Sources
  • Synthesis of composite electrode materials of FeOOH-based particles/carbon powder and their high-rate charge-discharge performance in lithium cells, Hideyuki Morimoto, Kazuhiko Takeno, Yuuki Uozumi, Ken-ichi Sugimoto, and Shin-ichi Tobishima, Yes, May 2011, J. Power Sources
  • Influence of Surface Modification of LiCoO2 by Organic Compounds on Electrochemical and Thermal Properties of Li/LiCoO2 Rechargeable Cells, No, Mar. 2011
  • Carbonate-modified Siloxanes as Solvents of Electrolyte Solutions for Rechargeable Lithium Cells, No, Aug. 2010, J. Power Sources
  • Electrochemical Properties of Iron Oxides as High-Capacity Negative Electrodes for Lithium Secondary Batteries, Yes, May 2010, Electrochemistry
  • Electrochemical Performance of SnO-B2O3-V2O5 Glasses as Negative Electrodes for Lithium Secondary Batteries, A.Hayashi, H. Morimoto, M. Nakai, K. Tadanaga, M. Tatsumisago, No, Oct. 2009, Physics and Chemistry of Glasses and Glass Technology
  • High-rate Charge-discharge Performance of Composite Electrodes of FeOOH-based Amorphous Particles and Carbon Powder, H. Morimoto, K. Takeno, T. Takahashi, K. Hayashi, and S. Tobishima, Yes, Jan. 2009, Key Engineering Materials
  • Preparation of High Lithium Ion Conductive Glass-ceramics Solid Electrolytes in the LiTi2(PO4)3 System by the Mechanochemical Method and Their Application as Coating Materials of LiCoO2, H. Morimoto, Y. Someno, Y. Arai and, S. Tobishima, Yes, Jan. 2009, Key Engineering Materials
  • Effects of Cyclic Carbonates as Additives to γ-Butyrolactone Electrolytes for Rechargeable Lithium Cells, S. Kinoshita, M. Kotato, Y. Sakata, M. Ue, Y.Watanabe, H. Morimoto, S. Tobishima, No, May 2008, J. Power Sources
  • Electrochemical Properties and Lithium Ion Solvation Behavior of Sulfone?ester Mixed Electrolytes for High-voltage Rechargeable Lithium Cells, Y. Watanabe, S. Kinoshita, S. Wada, K. Hoshino, H. Morimoto, S. Tobishima, No, Jan. 2008, J. Power Sources
  • Novel High-rate Lithium Intercalation Electrode Materials Prepared by LiOH Solution Treatment of TiO2/Carbon Composites, H. Morimoto, K. Kurita, T. Matsuda, and S. Tobishima, Yes, Jul. 2007, Key Engineering Materials
  • Influence of Glyme-based Nonaqueous Electrolyte Solutions on Electrochemical Properties of Si-based Anodes for Rechargeable Lithium Cells, T. Inose, D. Watanabe, H. Morimoto, and S. Tobishima, No, Sep. 2006, J. Power Sources
  • High-rate Charge-discharge Performance of Composite Materials of b-FeOOH Particles and Carbon Powder Prepared in the Presence of Ti(IV) Ions, H. Morimoto, K. Takeno, K. Sugimoto, Y. Uozumi, and S. Tobishima, Yes, Sep. 2006, Key Engineering Materials
  • High-Rate Charge-discharge Performances of b-FeOOH-carbon Composite Electrodes, H. Morimoto, K. Takeno, Y. Uozumi, K. Sugimoto, and S. Tobishima, Yes, Jun. 2006, Key Engineering Materials
  • Poly-ether Modified Siloxanes as Electrolyte Additives for Rechargeable Lithium Cells, T. Inose, S. Tada, H. Morimoto, and S. Tobishima, No, May 2006, J. Power Sources
  • Organic Compounds with Heteroatoms as Overcharge Protection Additives for Lithium Cells, Y. Watanabe, Y. Yamazaki, K. Yasua, H. Morimoto, and S. Tobishima, No, Apr. 2006, J. Power Sources
  • Electrochemical properties of aryladamantanes as new overcharge protection compounds for lithium cells, Yuu Watanabe / MORIMOTO HIDEYUKI / TOBISHIMA SHIN-ICHI, No, Mar. 2006, Journal of Power Sources
  • Anode Behavior of Electroplated Rough Surface Sn Thin Films for Lithium-ion Batteries, H. Morimoto, S. Tobishima, and H. Negishi, Yes, Aug. 2005, J. Power Sources
  • High-rate Lithium Intercalation into Composite Electrodes of Crystalline b-FeOOH and Carbon Powders, H. Morimoto, K. Takeno, Y. Uozumi, K. Sugimoto, and S. Tobishima, Yes, May 2005, Electrochemistry
  • Lithium intercalation into a-Fe2O3 obtained by mechanical milling of a-FeOOH, H. Morimoto, S. Tobishima, and Y. Iizuka, Yes, Aug. 2005, J. Power Sources
  • Mechanochemical Synthesis of Amorphous Solid Electrolytes Using SiS2 and Various Lithium Compounds, A. Hayashi, K. Iio, H. Morimoto, T. Minami, and M. Tatsumisago, No, Nov. 2004, Solid State Ionics
  • Glyme-based Nonaqueous Electrolytes for Rechargeable Lithium Cells, S. Tobishima, H. Morimoto, M. Aoki, Y. Saito, T. Inose, T. Fukumoto, and T. Kuryu, No, Mar. 2004, Electrochim. Acta
  • Amorphous Solid Electrolyte in the System Li2S-Al2S3-SiS2 Prepared by Mechanical Milling, A. Hayashi, T. Fukuda, H. Morimoto, T. Minami, and M. Tatsumisago, No, Aug. 2004, J. Mater. Sci.
  • Lithium Ion Conducting Glasses and Glass-Ceramics in the Systems Li2S-MxSy(M=Al, Si and P) Prepared by Mechanical Milling, A. Hayashi, T. Fukuda, S. Hama, H. Yamashita, H. Morimoto, T. Minami, and M. Tatsumisago, No, May 2004, J. Ceram. Soc. Jpn., Supplement 112-1, PacRim5 Special Issue
  • Characterization of SnO-MxOy(M=B and P) Glassy Anode Materials for Lithium Secondary Batteries Prepared by Melt-Quenching and Mechanical Milling, H. Morimoto, No, May 2004, J. Ceram. Soc. Jpn., Supplement 112-1, PacRim5 Special Issue
  • Mechnanochemical Synthesis of SnO-B2O3 Glassy Anode Materials for Rechargeable Lithium Batteries, A. Hayashi, M. Nakai, H. Morimoto, T. Minami, and M. Tatsumisago, No, Aug. 2004, J. Mater. Sci
  • Electrochemical and Thermal Behavior of Carbon Anodes for Lithium Cells, S. Tobishima, H. Morimoto, Y. Ohno, Y. Kimura, and T. Kashiwazaki, No, Aug. 2004, Key Engineering Materials
  • Cathode Properties of Amorphous 66.7V2O5-33.3FeOOH Powders Obtained by Mechanical Milling Technique, H. Morimoto, D. Ikeda, A. Hayashi, M. Tatsumisago, and T. Minami, Yes, Dec. 2003, Electrochmistry
  • Mechanochemical Synthesis of High Lithium Ion Conducting Materials in Li3N-SiS2, K. Iio, A. Hayashi, H. Morimoto, M. Tatsumisago, and T. Minami, No, May 2002, Chem. Mater.
  • New Lithium Ion Conducting Glass-Ceramics Prepared from Mechanochemical Li2S-P2S5 Glasses, M. Tatsumisago, S. Hama, A. Hayashi, H. Morimoto, and T. Minami, No, Dec. 2002, Solid State Ionics
  • Preparation of Li2S-P2S5 Amorphous Solid Electrolytes by Mechanical Milling, MORIMOTO HIDEYUKI, Yes, Feb. 2001, J. Am. Ceram. Soc.
  • High Lithium Ion Conductivity of Glass-Ceramics Derived from Mechanically Milled Glassy Powders, MORIMOTO HIDEYUKI, No, Sep. 2001, Chem. Lett.
  • Anode Properties of Amourphous 50SiO-50SnO Powders Synthesized by Mechanical Milling, MORIMOTO HIDEYUKI, Yes, 2001, Electrochem. Solid-State Lett.
  • Solid State Lithium Secondary Batteries Using an Amorphous Solid Electrolyte in the System (100-x)(0.6Li2S・0.4SiS2)・xLi4SiO4 Obtained by Mechanical Milling, MORIMOTO HIDEYUKI, No, Mar. 2001, Solid State Ionics
  • Cathodic Property of High Conductivity Ceramic Ca0.9La0.1MnO3 in Saline Solutions, MORIMOTO HIDEYUKI, No, 2001, Electrochemistry
  • Preparation and Characterization of SnO Based Glasses as Anode Materials for Lithium Secondary Batteries, MORIMOTO HIDEYUKI, No, Dec. 2001, J. Ceram. Soc. Jpn.
  • Preparation of Amorphous Solid Electrolyte in the System Li2S-SiS2-Li4SiO4 by Mechanical Milling,, MORIMOTO HIDEYUKI, No, Nov. 2000, Solid State Ionics
  • Preparation and Structure of Amorphous Solid Electrolyte Based on Lithium Sulfide, MORIMOTO HIDEYUKI, No, Sep. 2000, J. Non-Cryst. Solids
  • Formation Process of 60Li2S・40SiS2 Amorphous Materials with High Lithium Ion Conductivity Prepared by Mechanical Milling, MORIMOTO HIDEYUKI, No, Nov. 2000, J. Ceram. Soc. Jpn.
  • Mechanochemical Synthesis of the High Lithium Ion Conductive Amorphous Materials in the Systems Li2S-SiS2 and Li2S-SiS2-Li4SiO4, H. Morimoto, H. Yamashita, M. Tatsumisago, and T. Minami, Yes, Feb. 2000, J. Ceram. Soc. Jpn.
  • Mechanochemical Synthesis and Anode Properties of SnO-Based Amorphous Materials, MORIMOTO HIDEYUKI, Nov. 1999, J. Electrochem. Soc.
  • Mechanochemical Synthesis of New Amorphous Materials of 60Li2S.40SiS2 with High Lithium Ion Conductivity, MORIMOTO HIDEYUKI, May 1999, J. Am. Ceram. Soc.
  • Application of the CaMnO3-Based High Electronic Conductivity Ceramic to Cathode Active Material in Alkaline Battery, MORIMOTO HIDEYUKI, Jan. 1999, 9th Cimtec-World Forum on New Materials in Advanced Energy Technologies Symposium VII - Innovative Materials in Advanced Energy Technologies
  • Properties of the Perovskite-type Oxide Ceramic Ca1-xLa2x/3MnO3 as the Cathode Active Materials in Alkaline Batteries, MORIMOTO HIDEYUKI, Apr. 1997, Mat. Res. Bull.
  • Nonstoichiometry of Sintered Oxide Ca0.9La0.1MnO3 and Its Cathodic Properties in Alkaline Solutions, MORIMOTO HIDEYUKI, Feb. 1996, J. Electrochem. Soc.
  • Preparation of the Perovskite-type Oxide Ca0.9Nd0.1-yMnO3 and Its Cathodic Properties in Alkaline Solutions, MORIMOTO HIDEYUKI, Oct. 1996, Denki Kagaku (presently Electrochemistry)
  • Computer Simulation on the Usage Efficiency of Cathode Material in Alkaline Batteries, MORIMOTO HIDEYUKI, May 1995, J. Electrochem. Soc.
  • The Use of a Ceramic Oxide Cathode in an Alkaline Primary Battery, MORIMOTO HIDEYUKI, Dec. 1993, Progress in Batteries & Battery Materials
  • The Cathodic Properties of Sintered Porous Oxide Ca0.9La0.1MnO3-δ in Alkaline Solution, T. Esaka, H. Morimoto, and M. Kamata, Apr. 1993, Denki Kagaku (presently Electrochemistry), 61, 1028, 1029
  • Nonstoichiometry in Perovskite-type Oxide Ca1-xCexMnO3 and Its Properties in Alkaline Solution, MORIMOTO HIDEYUKI, Feb. 1992, J. Appl. Electrochem.
  • Charge/discharge Behavior of Triclinic LiTiOPO4 Anode Materials for Lithium Secondary Batteries, MORIMOTO Hideyuki;ITO Daigo;OGATA Yoichiro;SUZUKI Toshimasa;SAKAMAKI Kenta;TSUJI Takahiro;HIRUKAWA Masatoshi;MATSUMOTO Atsuyuki;TOBISHIMA Shin-ichi, 2016, Electrochemistry, 84, 11, 878, 881
  • Electrochemical Properties of Iron Oxides as High-Capacity Negative Electrodes for Lithium Secondary Batteries, Morimoto, Hideyuki;Watanabe, Hiroki;Tobishima, Shin-ichi, 2010, ELECTROCHEMISTRY, 78, 5, 339, 341

Misc.

  • Preparation and characterization of SnO-based glasses as anode materials for lithium secondary batteries, M Nakai, A Hayashi, H Morimoto, M Tatsumisago, T Minami, Dec. 2001, JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 109, 12, 1010, 1016
  • Characteristics of High-capacity SiO-C Anodes Containing Olivine-type LiMgPO4 Compounds for Lithium Secondary Batteries, Hideyuki Morimoto, Daiki Higuchi, Shin-ichi Tobishima, Oct. 2015, ELECTROCHEMISTRY, 83, 10, 813, 816
  • Effects of nonaqueous electrolyte solutions mixed with carbonate-modified siloxane on charge-discharge performance of negative electrodes for secondary lithium batteries, Yasuhiro Takei, Kazuhiko Takeno, Hideyuki Morimoto, Shin-ichi Tobishima, Apr. 2013, JOURNAL OF POWER SOURCES, 228, 32, 38
  • Electrochemical properties of aryladamantanes as new overcharge protection compounds for lithium cells, Y Watanabe, H Morimoto, S Tobishima, Mar. 2006, JOURNAL OF POWER SOURCES, 154, 1, 246, 254
  • Lithium intercalation into alpha-Fe2O3 obtained by mechanical milling of alpha-FeOOH, H Morimoto, S Tobishima, Y Iizuka, Aug. 2005, JOURNAL OF POWER SOURCES, 146, 1-2, 315, 318
  • Anode behavior of electroplated rough surface Sn thin films for lithium-ion batteries, H Morimoto, S Tobishima, H Negishi, Aug. 2005, JOURNAL OF POWER SOURCES, 146, 1-2, 469, 472
  • Electrochemical Properties of High-Capacity SiO-C Anodes Prepared by the Addition of Iron Oxide Powder for Lithium Secondary Batteries, Hideyuki Morimoto, Tatsuya Sudo, Hiroki Watanabe, Shin-ichi Tobishima, Oct. 2012, ELECTROCHEMISTRY, 80, 10, 812, 816
  • Charge-discharge properties of LiCoO2 electrodes modified by olivine-type compounds of LiMgPO4 for lithium secondary batteries, Hideyuki Morimoto, Hiroyuki Awano, Junpei Terashima, Shinji Nakanishi, Yasunori Hirama, Kiyotaka Ishikawa, Shin-ichi Tobishima, Aug. 2012, JOURNAL OF POWER SOURCES, 211, 66, 70
  • Mechanochemical synthesis of high lithium ion conducting materials in the system Li3N-SiS2, K Iio, A Hayashi, H Morimoto, M Tatsumisago, T Minami, Jun. 2002, CHEMISTRY OF MATERIALS, 14, 6, 2444, 2449
  • New lithium ion conducting glass-ceramics prepared from mechanochemical Li2S-P2S5 glasses, M Tatsumisago, S Hama, A Hayashi, H Morimoto, T Minami, Dec. 2002, SOLID STATE IONICS, 154, 635, 640
  • Cathode properties of amorphous 66.7V(2)O(5) center dot 33.3FeOOH powders obtained by mechanical milling technique, H Morimoto, D Ikeda, A Hayashi, M Tatsumisago, T Minami, Dec. 2003, ELECTROCHEMISTRY, 71, 12, 1036, 1038
  • Mechanochemical synthesis of SnO-B2O3 glassy anode materials for rechargeable lithium batteries, A Hayashi, M Nakai, H Morimoto, T Minami, M Tatsumisago, Aug. 2004, JOURNAL OF MATERIALS SCIENCE, 39, 16-17, 5361, 5364
  • Amorphous solid electrolytes in the system Li2S-Al2S3-SiS2 prepared by mechanical milling, A Hayashi, T Fukuda, H Morimoto, T Minami, M Tatsumisago, Aug. 2004, JOURNAL OF MATERIALS SCIENCE, 39, 16-17, 5125, 5127
  • Glyme-based nonaqueous electrolytes for rechargeable lithium cells, S Tobishima, H Morimoto, M Aoki, Y Saito, T Inose, T Fukumoto, T Kuryu, Mar. 2004, ELECTROCHIMICA ACTA, 49, 6, 979, 987
  • Mechanochemical synthesis of amorphous solid electrolytes using SiS2 and various lithium compounds, A Hayashi, K Iio, H Morimoto, T Minami, M Tatsumisago, Nov. 2004, SOLID STATE IONICS, 175, 1-4, 637, 640
  • Charge/discharge Behavior of Triclinic LiTiOPO4 Anode Materials for Lithium Secondary Batteries, Hideyuki Morimoto, Daigo Ito, Yoichiro Ogata, Toshimasa Suzuki, Kenta Sakamaki, Takahiro Tsuji, Masatoshi Hirukawa, Atsuyuki Matsumoto, Shin-ichi Tobishima, Nov. 2016, ELECTROCHEMISTRY, 84, 11, 878, 881
  • Formation process of 60Li(2)S center dot 40SiS(2) amorphous materials with high lithium ion conductivity prepared by mechanical milling, H Yamashita, A Hayashi, H Morimoto, M Tatsumisago, T Minami, Y Miura, Nov. 2000, JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 108, 11, 973, 978
  • Effects of organic silicon compounds as additives on charge discharge cycling efficiencies of lithium in nonaqueous electrolytes for rechargeable lithium cells, Ryota Yanagisawa, Hisayuki Endo, Masafumi Unno, Hideyuki Morimoto, Shin-ichi Tobishima, Nov. 2014, JOURNAL OF POWER SOURCES, 266, 232, 240
  • Lithium Ion Conductivities of NASICON-type Li1+xAlxTi2-x(PO4)(3) Solid Electrolytes Prepared from Amorphous Powder Using a Mechanochemical Method, Hideyuki Morimoto, Masatoshi Hirukawa, Atsuyuki Matsumoto, Takashi Kurahayashi, Nobukiyo Ito, Shin-ichi Tobishima, Oct. 2014, ELECTROCHEMISTRY, 82, 10, 870, 874
  • Analysis of structural and thermal stability in the positive electrode for sulfide-based all-solid-state lithium batteries, Hirofumi Tsukasaki, Misae Otoyama, Yota Mori, Shigeo Mori, Hideyuki Morimoto, Akitoshi Hayashi, Masahiro Tatsumisago, Nov. 2017, JOURNAL OF POWER SOURCES, 367, 42, 48
  • Direct observation of a non-crystalline state of Li2S-P2S5 solid electrolytes, Hirofumi Tsukasaki, Shigeo Mori, Hideyuki Morimoto, Akitoshi Hayashi, Masahiro Tatsumisago, Jun. 2017, SCIENTIFIC REPORTS, 7, 4142, 4148
  • High-rate Lithium Intercalation into Composite Electrodes of Crystalline b-FeOOH and Carbon Powders, H. Morimoto, K. Takeno, Y. Uozumi, K. Sugimoto, S. Tobishima, 2005, Electrochemistry, 73, 336, 338
  • High Lithium Ion Conductivity of Glass-Ceramics Derived from Mechanically Milled Glassy Powders, MORIMOTO HIDEYUKI, 2001, Chem. Lett., 872-873
  • Solid State Lithium Secondary Batteries Using an Amorphous Solid Electrolyte in the System (100-x)(0.6Li2S-0.4SiS2)-xLi4SiO4 Obtained by Mechanical Milling, MORIMOTO HIDEYUKI, 2001, Solid State Ionics, 140, 83-87
  • Cathodic Property of High Conductivity Ceramic Ca0.9La0.1MnO3 in Saline Solutions, MORIMOTO HIDEYUKI, 2001, Electrochemistry, 69, 612-614
  • Lithium Ion Conducting Glasses and Glass-Ceramics in the Systems Li2S-MxSy(M=Al, Si and P) Prepared by Mechanical Milling, A. Hayashi, T. Fukuda, S. Hama, H. Yamashita, H. Morimoto, T. Minami, M. Tatsumisago, 2004, J. Ceram. Soc. Jpn., Supplement 112-1, PacRim5 Special Issue, 112, 5, S695-S699
  • Characterization of SnO-MxOy(M=B and P) Glassy Anode Materials for Lithium Secondary Batteries Prepared by Melt-Quenching and Mechanical Milling, A. Hayashi, T. Konishi, M. Nakai, H. Morimoto, K. Tadanaga, T. Minami, and, M. Tatsumisago, 2004, J. Ceram. Soc. Jpn., Supplement 112-1, PacRim5 Special Issue, 112, 5, S713-S716
  • Electrochemical and Thermal Behavior of Carbon Anodes for Lithium Cells, S. Tobishima, H. Morimoto, Y. Ohno, Y. Kimura, T. Kashiwazaki, 2004, Key Engineering Materials, 269, 135, 138
  • Anode Properties of Amourphous 50SiO-50SnO Powders Synthesized by Mechanical Milling, MORIMOTO HIDEYUKI, 2001, Electrochem. Solid-State Lett., 4, 16-18
  • Preparation of Li2S-P2S5 Amorphous Solid Electrolytes by Mechanical Milling, MORIMOTO HIDEYUKI, 2001, J. Am. Ceram. Soc., 84, 477-479
  • Preparation and Structure of Amorphous Solid Electrolyte Based on Lithium Sulfide, MORIMOTO HIDEYUKI, 2000, J. Non-Cryst. Solids, 274, 30-38
  • Mechanochemical Synthesis of New Amorphous Materials of 60Li2S.40SiS2 with High Lithium Ion Conductivity, MORIMOTO HIDEYUKI, 1999, J. Am. Ceram. Soc., 82, 1352-1354
  • Properties of the Perovskite-type Oxide Ceramic Ca1-xLa2x/3MnO3 as the Cathode Active Materials in Alkaline Batteries, MORIMOTO HIDEYUKI, 1997, Mat. Res. Bull., 32, 1359-1366
  • Preparation of the Perovskite-type Oxide Ca0.9Nd0.1-yMnO3 and Its Cathodic Properties in Alkaline Solutions, MORIMOTO HIDEYUKI, 1996, Denki Kagaku (presently Electrochemistry), 64, 1084-1089
  • Nonstoichiometry of Sintered Oxide Ca0.9La0.1MnO3 and Its Cathodic Properties in Alkaline Solutions, MORIMOTO HIDEYUKI, 1996, J. Electrochem. Soc., 143, 567-570
  • he Cathodic Properties of Sintered Porous Oxide Ca0.9La0.1MnO3in Alkaline Solution, MORIMOTO HIDEYUKI, 1993, Denki Kagaku (presently Electrochemistry), 61, 1028-1029
  • Mechanochemical Synthesis of the High Lithium Ion Conductive Amorphous Materials in the Systems Li2S-SiS2 and Li2S-SiS2-Li4SiO4, MORIMOTO HIDEYUKI, 2000, J. Ceram. Soc. Jpn., 108, 129-132
  • Preparation of Amorphous Solid Electrolyte in the System Li2S-SiS2-Li4SiO4 by Mechanical Milling, MORIMOTO HIDEYUKI, 2000, Solid State Ionics, 136-137, 483-488
  • The Use of a Ceramic Oxide Cathode in an Alkaline Primary Battery, MORIMOTO HIDEYUKI, 1993, Progress in Batteries & Battery Materials, 12, 1-4
  • Mechanochemical Synthesis and Anode Properties of SnO-Based Amorphous Materials, MORIMOTO HIDEYUKI, 1999, J. Electrochem. Soc., 146, 3970-3973
  • Application of the CaMnO3-Based High Electronic Conductivity Ceramic to Cathode Active Material in Alkaline Battery, MORIMOTO HIDEYUKI, 1999, 9th Cimtec-World Forum on New Materials in Advanced Energy Technologies Symposium VII - Innovative Materials in Advanced Energy Technologies, 157-164
  • Nonstoichiometry in Perovskite-type Oxide Ca1-xCexMnO3 and Its Properties in Alkaline Solution, MORIMOTO HIDEYUKI, 1992, J. Appl. Electrochem., 22, 821-824
  • Computer Simulation on the Usage Efficiency of Cathode Material in Alkaline Batteries, MORIMOTO HIDEYUKI, 1995, J. Electrochem. Soc., 142, 1365-1368
  • Preparation of lithium ion conducting solid electrolyte of NASICON-type Li1+xAlxTi2-x(PO4)(3) (x=0.3) obtained by using the mechanochemical method and its application as surface modification materials of LiCoO2 cathode for lithium cell, MORIMOTO, Hideyuki, AWANO, Hiroyuki, TERASHIMA, Junpei, SHIDO, Yohei, NAKANISHI, Shinji, ITO, Nobukiyo, ISHIKAWA, Kiyotaka, TOBISHIMA, Shin-ichi, 2013, JOURNAL OF POWER SOURCES, 240, 636, 643

Presentations

  • 07 Jun. 2025, 07 Jun. 2025, 07 Jun. 2025
  • Properties of Sheet-type SiO-C Negative Electrodes for Sulfide-type All-solid-state Batteries, Yusuke Taniguchi, Syunpei Kurita, Hideyuki Morimoto, Materials Research Meeting 2025 (MRM2025), 09 Dec. 2025, 08 Dec. 2025, 13 Dec. 2025
  • 18 Nov. 2025, 18 Nov. 2025, 20 Nov. 2025
  • 18 Nov. 2025, 18 Nov. 2025, 20 Nov. 2025
  • 18 Nov. 2025, 18 Nov. 2025, 20 Nov. 2025
  • 18 Nov. 2025, 18 Nov. 2025, 20 Nov. 2025
  • 21 Nov. 2024, 20 Nov. 2024, 23 Nov. 2024
  • 20 Nov. 2024, 20 Nov. 2024, 23 Nov. 2024
  • 20 Nov. 2024, 20 Nov. 2024, 23 Nov. 2024
  • 25 May 2023
  • 25 May 2023
  • 12 Sep. 2022, 12 Sep. 2022, 16 Sep. 2022
  • 11 May 2022, 11 May 2022, 11 May 2022
  • 18 May 2022, 18 May 2022, 18 May 2022
  • 18 May 2022, 18 May 2022, 18 May 2022
  • 18 May 2022, 18 May 2022, 18 May 2022
  • 05 Nov. 2021
  • 05 Nov. 2021
  • 05 Nov. 2021
  • 05 Nov. 2021
  • 05 Nov. 2021
  • 05 Apr. 2021
  • 23 Mar. 2021
  • 20 Nov. 2020
  • 20 Nov. 2020
  • 19 Nov. 2020
  • Nov. 2020
  • 13 Nov. 2019
  • Nov. 2019
  • Nov. 2019
  • Nov. 2019
  • Nov. 2019
  • Thermal behavior and microstructure of Li3PS4-ZnO composite electrolyte, Hirofumi Tsukasaki, Hideyuki Morimoto, and Shigeo Mori, 22nd International Conference on Solid State Ionics (SSI-22), P-TUE-018, 16 Jun. 2019, 16 Jun. 2019, 21 Jun. 2019, PyeongChang Alpensia Resort Convention Center (Pyeong chang-Gun Gangwon-Do), Korea, International conference
  • Nov. 2018
  • Nov. 2018
  • Nov. 2018
  • Nov. 2018
  • Nov. 2018
  • Mar. 2018
  • 2017
  • 2017
  • 2017
  • 2016
  • 2015
  • 2015
  • 2015
  • 2015
  • 2015
  • 2014
  • 2014
  • 2014
  • 2014
  • 2013
  • 2013
  • 2013
  • 2013
  • 2013
  • 2013
  • 2012
  • 2012
  • 2012
  • 2012
  • 2012
  • 2012
  • 2012
  • Electrochemical Properties of Iron Oxides as Negative Electrodes for Lithium Secondary Batteries, Hideyuki Morimoto, Hiroki Watanabe, and Shin-ichi Tobishima, 62nd Annual Meeting of the International Society of Electrochemistry, 11 Sep. 2011, Niigata, Japan
  • 2011
  • 2011
  • 2011
  • 2011
  • 2011
  • 2011
  • 2011
  • Oxidation mechanisms of polyethylene separator under high electrochemical potential, Takashi Takeuchi, Masaki Hasegawa, Yasuhiko Bito, Hiroshi Yoshizawa, Hideyuki Morimoto and Shin-ichi Tobishima, 15th International Meeting on Lithium Batteries, 27 Jun. 2010
  • 2010
  • 2010
  • 2010
  • 2010
  • 2010
  • 2010
  • 2010
  • Development of High-Capacity Iron Oxides as Negative Electrodes for Lithium Secondary Batteries, Hideyuki Morimoto, Hiroki Watanabe, and Shin-ichi Tobishima, Advanced Lithium Batteries for Automobile Applications, 25 Nov. 2009
  • Electrochemical properties of negative electrode materials in the TiO2 system for lithium ion batteries, Mao Hori, Hideyuki Morimoto and Shin-ichi Tobishima, Advanced Lithium Batteries for Automobile Applications, 25 Nov. 2009
  • 2009
  • 2009
  • 2009
  • 2009
  • 2009
  • 2009
  • 2009
  • 2009
  • 2009
  • 2009
  • 2009
  • Electrochemical Performance of SnO-B2O3-V2O5 Glasses as Negative Electrodes for Lithium Secondary Batteries, Akitoshi Hayashi, Hideyuki Morimoto, Miyuki Nakai, Kiyoharu Tadanaga, Masahiro Tatsumisago, The 6th International Conference on Borate glasses, crystals and melts,, 18 Aug. 2008
  • 2008
  • 2008
  • 2008
  • 2008
  • 2008
  • 2008
  • 2008
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • 2007
  • Electrochemical Properties of LiCoPO4 Cathode Materials Prepared by Mechanical Milling Method, Kouta Ogawa, Hideyuki Morimoto, and Shin-ichi Tobishima, First Asian Conference on Electrochemical Power Sources, 15 Nov. 2006, Kyoto, Japan
  • LiOH Solution Treatment of Titania/Carbon Composite Material and Its High-rate Charge-discharge Performance, Hideyuki Morimoto, Kenji Kurita, Tetsuya Matsuda, Shin-ichi Tobishima, and Kazuhiko Takeno, First Asian Conference on Electrochemical Power Sources, 15 Nov. 2006, Kyoto, Japan
  • Aryladamantanes as New Overcharge Protection Compounds for Lithium Cells, Y. Watanabe, Y. Yamazaki, K. Yasuda, H. Morimoto, and S. Tobishima, The Second International Symposium on Development of Silicon-based Functional Materials, Nov. 2006, Kiryu, Japan
  • 2006
  • 2006
  • 2006
  • 2006
  • 2006
  • 2006
  • 2006
  • 2006
  • 2006
  • 2006
  • 2006
  • 2006
  • Characteristics of Polyether Modified Siloxanes as Electrolyte Additives for Lithium Cells, T. Inose, S. Tada, N. Yamada, H. Morimoto, and S. Tobishima, First International Conference on Silicon and Technology, Nov. 2005, Kiryu, Japan
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • 2005
  • Lithium Intercalation into a-Fe2O3 Obtained by Mechanical Milling of a-FeOOH, H. Morimoto, Y. Iizuka, and S. Tobishima, 12th International Meeting on Lithium Batteries, Jun. 2004, Nara, Japan
  • Development of Overcharge Protection Additives for Lithium Cells, Y. Watanabe, H. Morimoto, and S. Tobishima, 12th International Meeting on Lithium Batteries, Jun. 2004, Nara, Japan
  • Electrochemical and Thermal Behavior of Carbon Anodes with Several Electrolytes for Lithium Cells, Y. Kimura, Y. Ohno, H. Morimoto, and S. Tobishima, 12th International Meeting on Lithium Batteries, Jun. 2004, Nara, Japan
  • Anode Behavior of Electroplated Rough Surface Sn Thin Films for Lithium-ion Batteries, H. Negishi, H. Morimoto, and S. Tobishima, 12th International Meeting on Lithium Batteries, Jun. 2004, Nara, Japan
  • 2004
  • 2004
  • 2004
  • 2004
  • 2004
  • 2004
  • 2004
  • 2004
  • Lithium Ion Conducting Glasses and Glass-Ceramics in the Systems Li2S-MxSy(M = Al, Si and P) Prepared by Mechanical Milling, A. Hayashi, T. Fukuda, S. Hama, H. Yamashita, H. Morimoto, T. Minami, and M. Tatsumisago, 5th International Meeting of Pacific Rim Ceramic Societies (Pac Rim5), Sep. 2003, Nagoya, Japan
  • Characterization of SnO-MxOy (M = B and P) Glassy Anode Materials for Lithium Secondary Batteries Prepared by Melt-Quenching and Mechanical Milling, M. Tatsumisago, T. Konishi, M. Nakai, H. Morimoto, K. Tadanaga, T. Minami, and A. Hayashi, 5th International Meeting of Pacific Rim Ceramic Societies (Pac Rim5), Sep. 2003, Nagoya, Japan
  • Mechnanochemical Synthesis of SnO-B2O3 Glassy Anode Materials for Rechargeable Lithium Batteries, A. Hayashi, M. Nakai, H. Morimoto, T. Minami, and M. Tatsumisago, 4th International Conference on Mechanochemistry and Mechanical Alloying, Sep. 2003, Braunschweig, Germany
  • Amorphous Solid Electrolyte in the System Li2S-Al2S3-SiS2 Prepared by Mechanical Milling, A. Hayashi, T. Fukuda, H. Morimoto, T. Minami, and M. Tatsumisago, 4th International Conference on Mechanochemistry and Mechanical Alloying, Sep. 2003, Braunschweig, Germany
  • 2003
  • 2003
  • 2003
  • 2003
  • 2003
  • New Lithium Ion Conducting Glass-Ceramics Prepared from Mechanochemical Li2S-P2S5 Glasses, M. Tatsumisago, S. Hama, A. Hayashi, H. Morimoto, and T. Minami, 13th International Conference on Solid State Ionics, Jun. 2002, Malaysia
  • Mechanochemical Synthesis of Amorphous Solid Electrolytes Using SiS2 and Various Lithium Compound, A. Hayashi, K. Iio, H. Morimoto, T. Minami, and M. Tatsumisago, 14th International Conference on Solid State Ionics, Jun. 2002, California, U.S.A.
  • 2001
  • 2001
  • 2001
  • 2001
  • 2001
  • 2001
  • 2001
  • 2000
  • 2000
  • 2000
  • 2000
  • 2000
  • 2000
  • 2000
  • 2000
  • 2000
  • Preparation and Structure of Amorphous Solid Electrolyte Based on Lithium Sulfide (Invited Lecture), M. Tatsumisago, H. Yamashita, A. Hayashi, H. Morimoto, and T. Minami, 12th International Conference on the Physics of Non-Crystalline Solids, Oct. 1999, Tucson, Arizona, U.S.A.
  • Preparation of Amorphous Solid Electrolyte in the System Li2S-SiS2-Li4SiO4 by Mechanical Milling, M. Tatsumisago, H. Morimoto, H. Yamashita, and T. Minami, 12th International Conference on Solid State Ionics, Jun. 1999, Halkidiki, Greece
  • 1999
  • 1999
  • 1999
  • 1999
  • 1999
  • 1999
  • 1999
  • 1999
  • 1999
  • 1999
  • 1999
  • 1999
  • 1999
  • Application of the CaMnO3-Based High Electronic Conductivity Ceramic to Cathode Active Material in Alkaline Battery, T. Esaka, H. Morimoto, and S. Takai, 9th International Conference on Modern Materials & Technology, Jun. 1998, Florence, Italy
  • 1998
  • 1998
  • 1998
  • 1998
  • 1998
  • 1998
  • 1998
  • 1997
  • 1997
  • 1996
  • 1996
  • 1995
  • 1995
  • 1995
  • 1994
  • 1993
  • 1992
  • 1991
  • 1991
  • 25 May 2023

Industrial Property Rights

  • Patent right, 2001-109955
  • Patent right, 2001-273928
  • Patent right, 2001-250580
  • Patent right
  • Patent right, 2000-247680

■Educational activity information

Awards Education

  • Jan. 2024, Official journal
  • Jan. 2023, Official journal

■Information on Social Contribution Activities

Social Activities

  • Jul. 2022, Yes
  • May 2022, Yes, Yes, Yes, Yes