Patents by Inventor Norio Takami

Norio Takami 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: 11309533
    Abstract: According to one embodiment, provided is a composite oxide containing lithium, niobium, and tantalum. A mass ratio of tantalum with respect to niobium is in a range of from 0.01% to 1.0%.
    Type: Grant
    Filed: February 27, 2020
    Date of Patent: April 19, 2022
    Assignee: KABUSHIKI KAISHA TOSHIBA
    Inventors: Yasuhiro Harada, Norio Takami, Kazuomi Yoshima, Yasunobu Yamashita
  • Publication number: 20220093975
    Abstract: According to one embodiment, provided is an electrode group including a positive electrode and a negative electrode that includes a titanium-containing oxide. The electrode group has a wound structure of a flat shape, in which a stack including the positive electrode and the negative electrode is wound such that a center of the wound structure lies along a first direction. At least a part of a portion of the negative electrode, positioned within a thickness of 0.2 t from an innermost lap along a longest straight line in a wound cross-section of the wound structure orthogonal to the first direction with respect to a thickness t from the innermost lap to an outermost lap along the longest straight line, includes a slit that lies along the first direction.
    Type: Application
    Filed: February 26, 2021
    Publication date: March 24, 2022
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Keigo HOSHINA, Kazuomi YOSHIMA, Yasunobu YAMASHITA, Yuta KANAI, Yasuhiro HARADA, Norio TAKAMI
  • Publication number: 20220085357
    Abstract: According to one embodiment, a secondary battery includes a positive electrode including first vacancies, a negative electrode including second vacancies, and an electrolyte. The electrolyte includes a gel polymer portion and a liquid portion, and the gel polymer portion has a gel-part ratio within a range of from 20% to 80%. At least a part of the electrolyte is held in the first vacancies and the second vacancies. A first ratio r1 of the liquid portion to the gel polymer portion in the first vacancies is within a range of 0.01?r1?10. A second ratio r2 of the liquid portion to the gel polymer portion in the second vacancies is within a range of 0.01?r2?10.
    Type: Application
    Filed: February 26, 2021
    Publication date: March 17, 2022
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Kazuomi YOSHIMA, Tomoe KUSAMA, Tetsuya SASAKAWA, Yasuhiro HARADA, Norio TAKAMI
  • Publication number: 20220085369
    Abstract: According to one embodiment, a secondary battery includes a positive electrode, a negative electrode, a nonaqueous electrolyte and a separator. The positive electrode includes a halide including at least one metal element selected from the group consisting of copper, iron, nickel, cobalt, tin, and zinc. The negative electrode includes at least one selected from the group consisting of lithium metal, a lithium alloy, and a compound capable of having Li inserted and extracted. The nonaqueous electrolyte includes an ionic liquid including chlorine ions. The separator has lithium ion conductivity, and is interposed between the positive electrode and the negative electrode.
    Type: Application
    Filed: February 26, 2021
    Publication date: March 17, 2022
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Norio TAKAMI, Tomoko SUGIZAKI
  • Publication number: 20220085365
    Abstract: According to one embodiment, an electrode is provided. The electrode includes a current collector, and an active material-containing layer which is formed on a surface of the current collector and includes a plurality of niobium titanium composite oxide particles. A X-ray diffraction pattern using a Cu-K? ray source with respect to a surface of the active material-containing layer includes a peak A with a highest intensity in a range of 2?=26°±0.2° and a peak B with a highest intensity in a range of 2?=23.9°±0.2°. An intensity ratio (Ia/Ib) between an intensity Ia of the peak A and an intensity Ib of the peak B is in a range of 1.80 or more to 2.60 or less.
    Type: Application
    Filed: February 26, 2021
    Publication date: March 17, 2022
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Kakuya UEDA, Yasunobu YAMASHITA, Keigo HOSHINA, Tetsuya SASAKAWA, Yasuhiro HARADA, Norio TAKAMI, Shinsuke MATSUNO
  • Publication number: 20220085456
    Abstract: According to one embodiment, an electrode group is provided. The electrode group includes a positive electrode, a negative electrode, and a gel polymer layer interposed between the positive electrode and the negative electrode. At least a part of the negative electrode is opposed to the positive electrode. The gel polymer layer is formed of a gel electrolyte composed of a polymer material, an organic solvent and a lithium salt, and a sheet base member which supports the gel electrolyte, or the gel polymer layer is formed of only the gel electrolyte.
    Type: Application
    Filed: February 19, 2021
    Publication date: March 17, 2022
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Tomoe KUSAMA, Kazuomi YOSHIMA, Tetsuya SASAKAWA, Yasuhiro HARADA, Norio TAKAMI
  • Publication number: 20220085638
    Abstract: According to one embodiment, a storage battery includes one or more first batteries that include a first active material as a negative electrode active material, and one or more second batteries that include a second active material having an operation electric potential lower than that of the first active material as a negative electrode active material. Charge and the discharge of the second batteries are stopped based on a fact that a temperature of the storage battery is lower than a temperature threshold. The second batteries are caused to charge or discharge based on a fact that the temperature of the storage battery is equal to or higher than the temperature threshold.
    Type: Application
    Filed: February 26, 2021
    Publication date: March 17, 2022
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Tomoko SUGIZAKI, Tomoe KUSAMA, Yuta KANAI, Keigo HOSHINA, Tetsuya SASAKAWA, Ryosuke YAGI, Yasuhiro HARADA, Norio TAKAMI
  • Publication number: 20220085353
    Abstract: According to one embodiment, an active material is provided. The active material includes a first niobium titanium composite oxide expressed by a general formula (I), and a second niobium titanium composite oxide expressed by a general formula (II) and having a rutile-type crystal structure. The first niobium titanium composite oxide belongs to a crystal structure of a space group C2/m, and has a difference ?p between a maximum value and a minimum value of Nb occupancy in a 4i site, the difference ?p being 0.50??p?0.80, KaNb2?bMb+1?cTicO7??(I) Ti1?yNbyOz??(II).
    Type: Application
    Filed: February 26, 2021
    Publication date: March 17, 2022
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Yasuhiro HARADA, Kazuomi YOSHIMA, Norio TAKAMI
  • Publication number: 20220085352
    Abstract: According to one embodiment, provided is an electrode including a current collector and an active material-containing layer in contact with the current collector. The active material-containing layer contains a carbon nanotube and particles of titanium-containing oxide having an average particle size or 0.1 ?m to 3 ?m. A peel strength between the current collector and the active material-containing layer is within a range of 0.2 kN/m to 0.7 kN/m.
    Type: Application
    Filed: February 26, 2021
    Publication date: March 17, 2022
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Yasunobu YAMASHITA, Keigo HOSHINA, Yasuhiro HARADA, Norio TAKAMI, Shinsuke MATSUNO
  • Patent number: 11251414
    Abstract: According to one embodiment, an electrode group includes a positive electrode active material-containing layer, a negative electrode active material-containing layer, a lithium ion conductive layer, and a porous layer. The lithium ion conductive layer includes lithium-containing inorganic particles. The lithium ion conductive layer covers at least part of the positive electrode active material-containing layer. The porous layer covers at least part of the negative electrode active material-containing layer. The positive electrode active material-containing layer and the negative electrode active material-containing layer face each other via the lithium ion conductive layer and the porous layer.
    Type: Grant
    Filed: March 6, 2018
    Date of Patent: February 15, 2022
    Assignee: KABUSHIKI KAISHA TOSHIBA
    Inventors: Norio Takami, Kazuomi Yoshima, Takuya Iwasaki, Tomoko Sugizaki, Tomoe Kusama, Yasuhiro Harada
  • Patent number: 11251627
    Abstract: According to one embodiment, information related to a positive-electrode electric potential and a negative-electrode electric potential of each of one or more batteries is acquired, and whether deviation of the positive/negative-electrode electric potentials from a reference state is beyond a prescribed range is determined for each of one or more batteries. Further, in response to at least existence of a battery-to-be-restored that is a battery in which the determined deviation of positive/negative-electrode electric potentials from a reference state is beyond a prescribed range, a state of charge of the battery-to-be-restored is held in a restoration holding range for a prescribed time.
    Type: Grant
    Filed: February 6, 2020
    Date of Patent: February 15, 2022
    Assignee: KABUSHIKI KAISHA TOSHIBA
    Inventors: Taro Fukaya, Norio Takami, Yasuhiro Harada, Takashi Kishi, Keigo Hoshina, Kazuomi Yoshima, Yasunobu Yamashita
  • Patent number: 11251470
    Abstract: A secondary battery includes a positive electrode, a negative electrode and an electrolyte containing aqueous electrolyte. The negative electrode is provided with a negative electrode current collector having a compound including aluminum, and a negative electrode active material including titanium on a granule surface of the negative electrode current collector. A ratio of an atomic concentration of aluminum atoms to sum of atomic concentrations of aluminum atoms and titanium atoms on a surface of the negative electrode ({Al atomic concentration/(Al atomic concentration+Ti atomic concentration)}×100) is 3 atm % or more and 30 atm % or less.
    Type: Grant
    Filed: December 18, 2019
    Date of Patent: February 15, 2022
    Assignee: Kabushiki Kaisha Toshiba
    Inventors: Yumiko Sekiguchi, Shinsuke Matsuno, Norio Takami
  • Patent number: 11251436
    Abstract: According to one embodiment, there is provided a secondary battery including a positive electrode, a negative electrode, and an aqueous electrolyte. The positive electrode includes a positive electrode active material. The negative electrode includes a negative electrode active material and an additive resin containing a hydroxyl group unit and a first unit. The first unit consists of at least one of a butyral unit and an acetal unit. A content ratio of a content of the first unit contained in the additive resin to a content of the hydroxyl group unit contained in the additive resin is in a range of 1.2 to 18.
    Type: Grant
    Filed: January 31, 2020
    Date of Patent: February 15, 2022
    Assignee: KABUSHIKI KAISHA TOSHIBA
    Inventors: Yasuyuki Hotta, Shinsuke Matsuno, Norio Takami
  • Patent number: 11239462
    Abstract: A nonaqueous electrolyte battery according to one embodiment includes a negative electrode, a positive electrode and a nonaqueous electrolyte. The negative electrode includes a negative electrode active material-containing layer. The negative electrode active material-containing layer contains a negative electrode active material containing an orthorhombic Na-containing niobium titanium composite oxide. The positive electrode includes a positive electrode active material-containing layer. The positive electrode active material-containing layer contains a positive electrode active material. A mass C [g/m2] of the positive electrode active material per unit area of the positive electrode and a mass A [g/m2] of the negative electrode active material per unit area of the negative electrode satisfy the formula (1): 0.95?A/C?1.5.
    Type: Grant
    Filed: January 25, 2019
    Date of Patent: February 1, 2022
    Assignees: KABUSHIKI KAISHA TOSHIBA, Toshiba Infrastructure Systems & Solutions Corporation
    Inventors: Keigo Hoshina, Ryo Hara, Dai Yamamoto, Yasuhiro Harada, Norio Takami
  • Patent number: 11228031
    Abstract: According to one embodiment, an electrode includes a current collector and an active material-containing layer. The active material-containing layer contains a titanium-niobium composite oxide. A cross-section of the active material-containing layer includes a first cross-section from the current collector to length 0.5t with respect to a thickness t of the active material-containing layer, and a second cross-section from length 0.5t to length t from the current collector. An area ratio S1 occupied by the titanium-niobium composite oxide within the first cross-section, and an area ratio S2 occupied by the titanium-niobium composite oxide within the second cross-section satisfy 0.8<S2/S1<1. A maximum peak in a particle diameter frequency distribution of the titanium-niobium composite oxide is from 0.5 ?m to 3 ?m.
    Type: Grant
    Filed: March 6, 2020
    Date of Patent: January 18, 2022
    Assignee: KABUSHIKI KAISHA TOSHIBA
    Inventors: Keigo Hoshina, Yasunobu Yamashita, Wen Zhang, Yasuhiro Harada, Norio Takami
  • Patent number: 11217793
    Abstract: According to one embodiment, an electrode is provided. The electrode includes the active material-containing layer formed on the current collector and including active material particles. The particle size distribution chart obtained by the laser diffraction scattering method for the active material particles includes the first region and the second region. The first particle group included in the first region includes the first active material particles, and the second particle group included in the second region includes second active material particles. The carbon coverage of the first particle group is higher than the carbon coverage of the second particle group.
    Type: Grant
    Filed: February 28, 2020
    Date of Patent: January 4, 2022
    Assignee: KABUSHIKI KAISHA TOSHIBA
    Inventors: Yuta Kanai, Tetsuya Sasakawa, Keigo Hoshina, Yasuhiro Harada, Norio Takami
  • Patent number: 11211601
    Abstract: According to one embodiment, an electrode is provided. The electrode includes an active material-containing layer. The active material-containing layer includes an active material and a conductive agent. The active material contains primary particles of a niobium-titanium composite oxide. The conductive agent contains fibrous carbon. The primary particles have an average particle size of 0.3 ?m or more and 2 ?m or less. At least a part of a surface of the primary particles is coated with the fibrous carbon. A covering ratio of the primary particles by the fibrous carbon is 0.01% or more and 40% or less.
    Type: Grant
    Filed: March 8, 2019
    Date of Patent: December 28, 2021
    Assignees: KABUSHIKI KAISHA TOSHIBA, Toshiba Infrastructure Systems & Solutions Corporation
    Inventors: Keigo Hoshina, Wen Zhang, Yasuhiro Harada, Norio Takami
  • Patent number: 11201348
    Abstract: According to one embodiment, an electrode is provided. The electrode includes an active material-containing layer containing active material particles, ferroelectric particles, and solid electrolyte particles. A ratio (FEcontact) of the number of the ferroelectric particles in contact with the active material particles relative to the number of the ferroelectric particles included in the active material-containing layer is 85% or more. A ratio (SEnon-contact) of the number of the solid electrolyte particles not in contact with the active material particles relative to the number of the solid electrolyte particles included in the active material-containing layer is 30% or more.
    Type: Grant
    Filed: September 5, 2018
    Date of Patent: December 14, 2021
    Assignee: KABUSHIKI KAISHA TOSHIBA
    Inventors: Kazuomi Yoshima, Wen Zhang, Yasuhiro Harada, Norio Takami
  • Publication number: 20210376307
    Abstract: According to one embodiment, an electrode material is provided. The electrode material includes active material particle containing: a niobium-titanium composite oxide having an average composition in which a molar ratio of niobium to titanium (MNb/MTi) is greater than 2; and at least one element A selected from the group consisting of potassium, iron and phosphorus. The active material particle contain the element A at a concentration in the range of 100 ppm to 2000 ppm.
    Type: Application
    Filed: January 22, 2021
    Publication date: December 2, 2021
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Yasuhiro HARADA, Kazuomi YOSHIMA, Norio TAKAMI
  • Publication number: 20210313556
    Abstract: According to one embodiment, an active material includes a lithium-titanium composite oxide. The lithium-titanium composite oxide includes a lithium compound including at least one of lithium carbonate and lithium hydroxide. A lithium amount of the lithium compound is within a range of 0.017 to 0.073 mass %.
    Type: Application
    Filed: June 21, 2021
    Publication date: October 7, 2021
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Hiroki INAGAKI, Norio Takami