Patents by Inventor Kazuhiko Mizuuchi

Kazuhiko Mizuuchi has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11394034
    Abstract: A support for a polymer electrolyte fuel cell catalyst satisfying the following requirements (A), (B), (C), and (D), and a producing method thereof, as well as a catalyst layer for a polymer electrolyte fuel cell and a fuel cell: (A) a specific surface area according to a BET analysis of a nitrogen adsorption isotherm is from 450 to 1500 m2/g. (B) a nitrogen adsorption and desorption isotherm forms a hysteresis loop in a range of relative pressure P/P0 of more than 0.47 but not more than 0.90, and a hysteresis loop area ?S0.47-0.9 is from 1 to 35 mL/g; (C) a relative pressure Pclose/P0 at which the hysteresis loop closes is more than 0.47 but not more than 0.70; and (D) a half-width of a G band detected by Raman spectrometry in a range of from 1500 to 1700 cm?1 is from 45 to 75 cm?1.
    Type: Grant
    Filed: June 29, 2018
    Date of Patent: July 19, 2022
    Assignee: NIPPON STEEL CHEMICAL & MATERIAL CO., LTD.
    Inventors: Takashi Iijima, Kenichiro Tadokoro, Masataka Hiyoshi, Shinya Furukawa, Tomoko Komura, Kazuhiko Mizuuchi
  • Patent number: 10886539
    Abstract: A carbon material for catalyst carrier use excellent in both durability and power generation performance under operating conditions at the time of low humidity, in particular both durability of a carbon material for catalyst carrier use with respect to repeated load fluctuations due to startup and shutdown and power generation performance under operating conditions at the time of low humidity, and a catalyst for solid-polymer fuel cell use prepared using the same etc. are provided. To solve this technical problem, according to one aspect of the present invention, there is provided a carbon material for catalyst carrier use satisfying the following (A) to (D): (A) an oxygen content OICP of 0.1 to 3.0 mass % contained in the carbon material for catalyst carrier use; (B) a residual amount of oxygen O1200° C. of 0.1 to 1.5 mass % remaining after heat treatment in an inert gas (or vacuum) atmosphere at 1200° C.
    Type: Grant
    Filed: February 17, 2016
    Date of Patent: January 5, 2021
    Assignee: NIPPON STEEL CHEMICAL & MATERIAL CO., LTD.
    Inventors: Takashi Iijima, Noriyuki Negi, Masataka Hiyoshi, Katsumasa Matsumoto, Shinya Furukawa, Kenichiro Tadokoro, Takumi Nishimoto, Hiroyuki Hayashida, Takumi Kouno, Kazuhiko Mizuuchi
  • Publication number: 20200287221
    Abstract: A support for a polymer electrolyte fuel cell catalyst satisfying the following requirements (A), (B), (C), and (D), and a producing method thereof, as well as a catalyst layer for a polymer electrolyte fuel cell and a fuel cell: (A) a specific surface area according to a BET analysis of a nitrogen adsorption isotherm is from 450 to 1500 m2/g. (B) a nitrogen adsorption and desorption isotherm forms a hysteresis loop in a range of relative pressure P/P0 of more than 0.47 but not more than 0.90, and a hysteresis loop area ?S0.47-0.9 is from 1 to 35 mL/g; (C) a relative pressure Pclose/P0 at which the hysteresis loop closes is more than 0.47 but not more than 0.70; and (D) a half-width of a G band detected by Raman spectrometry in a range of from 1500 to 1700 cm?1 is from 45 to 75 cm?1.
    Type: Application
    Filed: June 29, 2018
    Publication date: September 10, 2020
    Applicant: NIPPON STEEL Chemical & Material Co., Ltd.
    Inventors: Takashi IIJIMA, Kenichiro TADOKORO, Masataka HIYOSHI, Shinya FURUKAWA, Tomoko KOMURA, Kazuhiko MIZUUCHI
  • Patent number: 10096837
    Abstract: Provided are: a supporting carbon material for a solid polymer fuel cell, said supporting carbon material making it possible to produce a high-performance solid polymer fuel cell in which there is little decrease in power generation performance as a result of repeated battery load fluctuation that inevitably occurs during operation of the solid polymer fuel cell; and a catalyst metal particle-supporting carbon material. The present invention relates to: a supporting carbon material for a solid polymer fuel cell, said supporting carbon material being a porous carbon material in which the specific surface area of mesopores having a pore diameter of 2-50 nm according to nitrogen adsorption measurement is 600-1,600 m2/g, the relative intensity ratio (IG?/IG) of the peak intensity (IG?) of the G-band 2,650-2,700 cm?1 range to the peak intensity (IG) of the G-band 1,550-1,650 cm?1 range in the Raman spectrum is 0.8-2.
    Type: Grant
    Filed: March 19, 2015
    Date of Patent: October 9, 2018
    Assignees: NIPPON STEEL & SUMITOMO METAL CORPORATION, NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD.
    Inventors: Takashi Iijima, Masataka Hiyoshi, Katsumasa Matsumoto, Hiroyuki Hayashida, Kazuhiko Mizuuchi, Takumi Kouno, Masakazu Higuchi, Masakazu Katayama
  • Patent number: 10003085
    Abstract: Provided are a supporting carbon material for a solid polymer fuel cell and a metal-catalyst-particle-supporting carbon material that, when used as a carrier for a solid polymer fuel cell catalyst, have excellent power generation performance in high-humidity conditions, which are conditions in which solid polymer fuel cells are operated. A supporting carbon material for a solid polymer fuel cell and a metal-catalyst-particle-supporting carbon material characterized in being a porous carbon material, the hydrogen content being 0.004-0.010% by mass, the nitrogen adsorption BET specific surface area being 600 m2/g-1500 m2/g, and the relative intensity ratio (ID/IG) between the peak intensity (ID) in the range of 1200-1400 cm?1 known as the D-band and the peak intensity (IG) in the range of 1500-1700 cm?1 known as the G-band, obtained from the Raman spectrum, being 1.0-2.0.
    Type: Grant
    Filed: December 12, 2014
    Date of Patent: June 19, 2018
    Assignees: NIPPON STEEL & SUMITOMO METAL CORPORATION, NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD.
    Inventors: Katsumasa Matsumoto, Takashi Iijima, Masataka Hiyoshi, Hiroyuki Hayashida, Kazuhiko Mizuuchi, Takumi Kouno, Masakazu Higuchi, Masakazu Katayama
  • Publication number: 20180069247
    Abstract: A carbon material for catalyst carrier use excellent in both durability and power generation performance under operating conditions at the time of low humidity, in particular both durability of a carbon material for catalyst carrier use with respect to repeated load fluctuations due to startup and shutdown and power generation performance under operating conditions at the time of low humidity, and a catalyst for solid-polymer fuel cell use prepared using the same etc. are provided. To solve this technical problem, according to one aspect of the present invention, there is provided a carbon material for catalyst carrier use satisfying the following (A) to (D): (A) an oxygen content OICP of 0.1 to 3.0 mass % contained in the carbon material for catalyst carrier use; (B) a residual amount of oxygen O1200° C. of 0.1 to 1.5 mass % remaining after heat treatment in an inert gas (or vacuum) atmosphere at 1200° C.
    Type: Application
    Filed: February 17, 2016
    Publication date: March 8, 2018
    Applicants: NIPPON STEEL & SUMITOMO METAL CORPORATION, NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD.
    Inventors: Takashi IIJIMA, Noriyuki NEGI, Masataka HIYOSHI, Katsumasa MATSUMOTO, Shinya FURUKAWA, Kenichiro TADOKORO, Takumi NISHIMOTO, Hiroyuki HAYASHIDA, Takumi KOUNO, Kazuhiko MIZUUCHI
  • Publication number: 20170194652
    Abstract: Provided are: a supporting carbon material for a solid polymer fuel cell, said supporting carbon material making it possible to produce a high-performance solid polymer fuel cell in which there is little decrease in power generation performance as a result of repeated battery load fluctuation that inevitably occurs during operation of the solid polymer fuel cell; and a catalyst metal particle-supporting carbon material. The present invention relates to: a supporting carbon material for a solid polymer fuel cell, said supporting carbon material being a porous carbon material in which the specific surface area of mesopores having a pore diameter of 2-50 nm according to nitrogen adsorption measurement is 600-1,600 m2/g, the relative intensity ratio (IG?/IG) of the peak intensity (IG?) of the G-band 2,650-2,700 cm?1 range to the peak intensity (IG) of the G-band 1,550-1,650 cm?1 range in the Raman spectrum is 0.8-2.
    Type: Application
    Filed: March 19, 2015
    Publication date: July 6, 2017
    Applicants: NIPPON STEEL & SUMITOMO METAL CORPORATION, NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD.
    Inventors: Takashi IIJIMA, Masataka HIYOSHI, Katsumasa MATSUMOTO, Hiroyuki HAYASHIDA, Kazuhiko MIZUUCHI, Takumi KOUNO, Masakazu HIGUCHI, Masakazu KATAYAMA
  • Patent number: 9656870
    Abstract: This invention provides a metal encapsulated dendritic carbon nanostructure comprising a dendritic carbon nanostructure comprising a branched carbon-containing rod-shaped or annular material and a metallic body capsulated in the carbon nanostructure. There is also provided a dendritic carbon nanostructure comprising a branched carbon-containing rod-shaped or annular material.
    Type: Grant
    Filed: December 9, 2008
    Date of Patent: May 23, 2017
    Assignees: Nippon Steel & Sumikin Chemical CO., LTD, Inter-University Research Institute Corporation, National Institutes of Natural Sciences
    Inventors: Nobuyuki Nishi, Shigenori Numao, Ken Judai, Junichi Nishijo, Kazuhiko Mizuuchi
  • Publication number: 20160329571
    Abstract: Provided are a supporting carbon material for a solid polymer fuel cell and a metal-catalyst-particle-supporting carbon material that, when used as a carrier for a solid polymer fuel cell catalyst, have excellent power generation performance in high-humidity conditions, which are conditions in which solid polymer fuel cells are operated. A supporting carbon material for a solid polymer fuel cell and a metal-catalyst-particle-supporting carbon material characterized in being a porous carbon material, the hydrogen content being 0.004-0.010% by mass, the nitrogen adsorption BET specific surface area being 600 m2/g-1500 m2/g, and the relative intensity ratio (ID/IG) between the peak intensity (ID) in the range of 1200-1400 cm?1 known as the D-band and the peak intensity (IG) in the range of 1500-1700 cm?1 known as the G-band, obtained from the Raman spectrum, being 1.0-2.0.
    Type: Application
    Filed: December 12, 2014
    Publication date: November 10, 2016
    Applicants: NIPPON STEEL & SUMITOMO METAL CORPORATION, NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD.
    Inventors: Katsumasa MATSUMOTO, Takashi IIJIMA, Masataka HIYOSHI, Hiroyuki HAYASHIDA, Kazuhiko MIZUUCHI, Takumi KOUNO, Masakazu HIGUCHI, Masakazu KATAYAMA
  • Patent number: 9324996
    Abstract: This invention provides a carbon nanostructure including: carbon containing rod-shaped materials and/or carbon containing sheet-shaped materials which are bound three-dimensionally; and graphene multilayer membrane walls which are formed in the rod-shaped materials and/or the sheet-shaped materials; wherein air-sac-like pores, which are defined by the graphene multilayer membrane walls, are formed in the rod-shaped materials and/or the sheet-shaped materials.
    Type: Grant
    Filed: August 8, 2011
    Date of Patent: April 26, 2016
    Assignees: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION NATIONAL INSTITUTES OF NATURAL SCIENCES, DENSO CORPORATION, NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD.
    Inventors: Nobuyuki Nishi, Norikazu Adachi, Yasuyuki Ooba, Manabu Yamada, Kenichiro Kami, Kazuhiko Mizuuchi
  • Publication number: 20150352522
    Abstract: A carbon material for catalyst support use which, when used as a catalyst support, maintains a high porosity while being stable chemically, having electrical conductivity, being excellent in durability, and being excellent in diffusibility of the reaction starting materials and reaction products is provided. It is characterized by comprising dendritic carbon mesoporous structures which have 3D structures of branched carbon-containing rod shapes or carbon-containing ring shapes, having a pore size of 1 to 20 nm and a cumulative pore volume of 0.2 to 1.5 cc/g found by analyzing a nitrogen adsorption isotherm by the Dollimore-Heal method, and having a powder X-ray diffraction spectrum which has a peak corresponding to a 002 diffraction line of graphite between diffraction angles (2?: degrees) of 20 to 30 degrees and has a peak with a half value width of 0.1 degree to 1.0 degree at 25.5 to 26.5 degrees.
    Type: Application
    Filed: February 21, 2014
    Publication date: December 10, 2015
    Applicants: NIPPON STEEL & SUMITOMO METAL CORPORATION, NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD.
    Inventors: Kazuhiko MIZUUCHI, Takumi KOUNO, Masakazu KATAYAMA, Masakazu HIGUCHI, Nobuyuki NISHI, Takashi IIJIMA, Masataka HIYOSHI, Katsumasa MATSUMOTO
  • Patent number: 8657923
    Abstract: The present invention provides a microporous carbon material capable of expressing functions that supported metal has while maintaining pore functions that the microporous carbon material inherently possesses. The microporous carbon material 5 includes: a three-dimensional long-range ordered structure within a range from 0.7 nm or more to 2 nm or less; and micropores 2a, wherein a transition metal 4 is supported on surfaces of the micropores 2a. The microporous carbon material is obtained by a method including: introducing an organic compound on a surface of and inside the micropores of a porous material containing transition metal, and obtaining a composite of the microporous carbon material containing the transition metal and the porous material by carbonizing the organic compound by a chemical vapor deposition method; and removing the porous material.
    Type: Grant
    Filed: February 25, 2009
    Date of Patent: February 25, 2014
    Assignee: Nissan Motor Co., Ltd.
    Inventors: Masashi Ito, Takashi Kyotani, Hirotomo Nishihara, Peng-Xiang Hou, Li-Xiang Li, Kyohei Hada, Kazuhiko Mizuuchi
  • Publication number: 20130181172
    Abstract: This invention provides a carbon nanostructure including: carbon containing rod-shaped materials and/or carbon containing sheet-shaped materials which are bound three-dimensionally; and graphene multilayer membrane walls which are formed in the rod-shaped materials and/or the sheet-shaped materials; wherein air-sac-like pores, which are defined by the graphene multilayer membrane walls, are formed in the rod-shaped materials and/or the sheet-shaped materials.
    Type: Application
    Filed: August 8, 2011
    Publication date: July 18, 2013
    Applicants: INTER-UNIVERSITY RESEARCH INSTITUTE CORPORATION, NATIONAL INSTITUTES OF NATURAL SCIENCES, NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD., DENSO CORPORATION
    Inventors: Nobuyuki Nishi, Norikazu Adachi, Yasuyuki Ooba, Manabu Yamada, Kenichiro Kami, Kazuhiko Mizuuchi
  • Publication number: 20120295108
    Abstract: This invention provides a carbon nanostructure including: carbon containing rod-shaped materials and/or carbon containing sheet-shaped materials which are bound three-dimensionally; and graphene multilayer membrane walls which are formed in the rod-shaped materials and/or the sheet-shaped materials; wherein air-sac-like pores, which are defined by the graphene multilayer membrane walls, are formed in the rod-shaped materials and/or the sheet-shaped materials.
    Type: Application
    Filed: August 2, 2012
    Publication date: November 22, 2012
    Inventors: Nobuyuki NISHI, Kazuhiko MIZUUCHI, Norikazu ADACHI, Yasuyuki OOBA
  • Publication number: 20110058308
    Abstract: This invention provides a metal encapsulated dendritic carbon nanostructure comprising a dendritic carbon nanostructure comprising a branched carbon-containing rod-shaped or annular material and a metallic body capsulated in the carbon nanostructure. There is also provided a dendritic carbon nanostructure comprising a branched carbon-containing rod-shaped or annular material.
    Type: Application
    Filed: December 9, 2008
    Publication date: March 10, 2011
    Inventors: Nobuyuki Nishi, Shigenori Numao, Kent Judai, Junichi Nishijo, Kazuhiko Mizuuchi
  • Publication number: 20110052486
    Abstract: The present invention provides a microporous carbon material capable of expressing functions that supported metal has while maintaining pore functions that the microporous carbon material inherently possesses. The microporous carbon material 5 includes: a three-dimensional long-range ordered structure within a range from 0.7 nm or more to 2 nm or less; and micropores 2a, wherein a transition metal 4 is supported on surfaces of the micropores 2a. The microporous carbon material is obtained by a method including: introducing an organic compound on a surface of and inside the micropores of a porous material containing transition metal, and obtaining a composite of the microporous carbon material containing the transition metal and the porous material by carbonizing the organic compound by a chemical vapor deposition method; and removing the porous material.
    Type: Application
    Filed: February 25, 2009
    Publication date: March 3, 2011
    Inventors: Masashi Ito, Takashi Kyotani, Hirotomo Nishihara, Peng-Xiang Hou, Li-Xiang Li, Kyohei Hada, Kazuhiko Mizuuchi
  • Patent number: 6780549
    Abstract: This invention relates to a photo- or heat-curable resin composition which yields a cured product with minimal cracking and high reliability. The resin composition of this invention comprises 100 parts by weight of the resin-forming component containing a photo- or heat-polymerizable unsaturated compound and 0.01-5 parts by weight of an inorganic filler such as silica sol with its average particle diameter controlled in the range 5 nm-0.5 &mgr;m. The composition exhibits high heat resistance and good microfabrication quality and is useful as a peripheral material of electronic parts such as semiconductor devices by the build-up process, for example, as a material for forming insulation layers in multilayer printed wiring boards.
    Type: Grant
    Filed: August 22, 2001
    Date of Patent: August 24, 2004
    Assignee: Nippon Steel Chemical Co., Ltd.
    Inventors: Masahiko Takeuchi, Kazuhiko Mizuuchi, Hironobu Kawasato
  • Patent number: 6780502
    Abstract: This invention relates to an insulating resin composition which exhibits high impact resistance and heat resistance and good adhesiveness to the plating metal, is selectively etchable by a permanganate salt commonly used in a plating operation and suited for an insulating layer in multilayer wiring boards. The insulating resin composition is a photo-polymerizable or thermally polymerizable resin composition comprising 3-10 parts by weight of a crosslinked elastic polymer per 100 parts by weight of a resin component (excluding the crosslinked elastic poly and including monomers) and said crosslinked elastic polymer has carboxyl groups and is dispersed with an average secondary particle diameter in the range of 0.5-2 &mgr;m.
    Type: Grant
    Filed: October 2, 2002
    Date of Patent: August 24, 2004
    Assignee: Nippon Steel Chemical Co., Ltd.
    Inventors: Shinji Inaba, Koji Nakamura, Koichi Fujishiro, Kazuhiko Mizuuchi
  • Patent number: 6770421
    Abstract: This invention relates to a photo- or heat-curable resin composition which yields a cured product with minimal cracking and high reliability. The resin composition of this invention comprises 100 parts by weight of (A) photo- or heat-polymerizable unsaturated compound composed of a polycarboxylic acid adduct of bisphenol-epoxy (meth)acrylate, 10-100 parts by weight of (B) alkylene oxide-modified product of (meth)acrylate or oligomers thereof, 0-50 parts by weight of (C) compound containing epoxy group and 0-50 parts by weight of (D) photopolymerization initiator or sensitizer. The composition exhibits high heat resistance and good microfabrication quality and is useful as a peripheral material of electronic parts such as semiconductor devices by the build-up process, for example, as a material for forming insulation layers in multilayer printed wiring boards.
    Type: Grant
    Filed: November 30, 2001
    Date of Patent: August 3, 2004
    Assignee: Nippon Steel Chemical, Co., Ltd
    Inventors: Masahiko Takeuchi, Kazuhiko Mizuuchi, Hironobu Kawasato
  • Publication number: 20030091844
    Abstract: This invention relates to an insulating resin composition which exhibits high impact resistance and heat resistance and good adhesiveness to the plating metal, is selectively etchable by a permanganate salt commonly used in a plating operation and suited for an insulating layer in multilayer wiring boards. The insulating resin composition is a photo polymerizable or thermally polymerizable resin composition comprising 3-10 parts by weight of a crosslinked elastic polymer per 100 parts by weight of a resin component (excluding the crosslinked elastic poly and including monomers) and said crosslinked elastic polymer has carboxyl groups and is dispersed with an average secondary particle diameter in the range of 0.5-2 &mgr;m.
    Type: Application
    Filed: October 2, 2002
    Publication date: May 15, 2003
    Inventors: Shinji Inaba, Koji Nakamura, Koichi Fujishiro, Kazuhiko Mizuuchi