Patents by Inventor Takuya Jin
Takuya Jin 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).
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Publication number: 20260196477Abstract: A negative electrode active material for nonaqueous electrolyte secondary battery according to one embodiment of the present invention is composed of composite particles, each of which comprises a sodium aluminate phase that contains Na and Al, silicon phases that are dispersed in the sodium aluminate phase, and a conductive layer that is formed on the surface of a base particle which is composed of the sodium aluminate phase and the silicon phases.Type: ApplicationFiled: November 14, 2023Publication date: July 9, 2026Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventor: Takuya Jin
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Publication number: 20260171405Abstract: According to an exemplary embodiment, the negative electrode active material for nonaqueous electrolyte secondary batteries is a composite particle comprising: an alkali aluminate phase containing two or more alkali metal elements and Al; a silicon phase that is dispersed in the alkali aluminate phase; and a conductive layer that is formed on the surface of a base particle comprising the alkali aluminate phase and the silicon phase.Type: ApplicationFiled: November 15, 2023Publication date: June 18, 2026Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventor: Takuya Jin
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Patent number: 12633542Abstract: With respect to this electrode, the coverage of the surface of a coated active material by a conductive material is from 10% to 60%; the mixture resistance of a electrode mixture material is 20 ?cm or less in cases where the electrode mixture material is divided into three equal parts in the thickness direction, namely into a first region, a second region and a third region from a core material side, the content (a) of a PTFE powder in the first region, the content (b) of the PTFE powder in the second region and the content (c) of the PTFE powder in the third region satisfy ?10%?(c?a)/(a+b+c)?10%.Type: GrantFiled: July 7, 2021Date of Patent: May 19, 2026Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Daisuke Katou, Reiko Izumi, Takuya Jin, Shinichiro Kondo
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Patent number: 12633533Abstract: A method for producing a lithium-transition metal composite oxide, including steps of preparing a mixture including a lithium-containing compound and a transition metal compound; obtaining a molded body of the mixture; and sintering the molded bodies in a container having at least one vent hole, to obtain sintered bodies.Type: GrantFiled: January 21, 2021Date of Patent: May 19, 2026Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Daisuke Katou, Takuya Jin, Mitsuru Iwai, Tomoo Takayama
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Patent number: 12555793Abstract: This electrode for secondary batteries is provided with a core material and an electrode mixture sheet that is bonded to the surface of the core material. The electrode mixture sheet contains an active material, a fibrous first binder and a particulate second binder; and the second binder is mainly composed of a polyvinylidene fluoride, while having a volume-based median diameter of 50 ?m or less. The first binder is mainly composed, for example, of a polytetrafluoroethylene.Type: GrantFiled: January 19, 2021Date of Patent: February 17, 2026Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Takuya Jin, Daisuke Katou, Shinichiro Kondo, Reiko Izumi, Masaya Ugaji
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Patent number: 12531230Abstract: According to this method for producing an electrode, a fibrous binder is produced by fibrillating a particulate binder, which has a volume-based median diameter of from 5 to 100 ?m, by means of the application of a shear force, and an electrode mixture is produced by mixing the fibrous binder with an active material, said electrode mixture having a solid content concentration of substantially 100%. It is preferable that the fibrillation is carried out so that the breaking peripheral velocity ratio of the electrode mixture is 8 or more. In addition, an electrode mixture sheet is produced by shaping the electrode mixture into a sheet form by rolling, and the electrode mixture sheet is subsequently bonded to a core material.Type: GrantFiled: January 19, 2021Date of Patent: January 20, 2026Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Reiko Izumi, Shinichiro Kondo, Daisuke Katou, Takuya Jin
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Patent number: 12444730Abstract: This secondary battery electrode is provided with a core material configured from a metal foil that softens at less than or equal to 200° C., and an electrode mixture sheet which is bonded on the surface of the core material. The electrode mixture sheet includes an active material and a fibrous binder, and the active material bites into the core material, with the maximum bite depth at least 30% of the thickness of the core material. The fibrous binder may for example have polytetrafluoroethylene as the main component.Type: GrantFiled: January 19, 2021Date of Patent: October 14, 2025Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Shinichiro Kondo, Reiko Izumi, Daisuke Katou, Takuya Jin, Yosuke Takayama, Masateru Mikami
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Patent number: 12381216Abstract: A method for producing a lithium-containing composite oxide, the method including: a first step of preparing a lithium hydroxide; a second step of heating a hydroxide containing nickel and a metal M1 other than lithium and nickel to 300° C. or higher and 800° C. or lower, to obtain a composite oxide containing the nickel and the metal M; a third step of mixing the lithium hydroxide and the composite oxide, to obtain a mixture; a fourth step of compression-molding the mixture, to obtain a molded body; and a fifth step of baking the molded body at 600° C. or higher and 850° C. or lower, to obtain a baked body.Type: GrantFiled: December 6, 2019Date of Patent: August 5, 2025Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Daisuke Katou, Tomoo Takayama, Takuya Jin, Mitsuru Iwai
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Publication number: 20250167220Abstract: A negative electrode active material for a non-aqueous electrolyte secondary battery according to one example of an embodiment comprises composite particles (30) that include a lithium aluminate phase (31) and a silicon phase (32) dispersed in the lithium aluminate phase (31). The lithium aluminate phase (31) contains boron, and the ratio (MAI/MB) of the aluminum percentage content (MAI) and the boron percentage content (NIB) with respect to the total amount of the elements other than oxygen constituting the lithium aluminate phase (31) and the silicon phase (32) is 1.0-30.0, inclusive.Type: ApplicationFiled: February 10, 2023Publication date: May 22, 2025Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Takuya Jin, Taisuke Asano
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Publication number: 20250158023Abstract: A negative electrode active material for a non-aqueous electrolyte secondary battery according to one example of an embodiment comprises composite particles (30) that include a lithium aluminate phase (31) and a silicon phase (32) dispersed in the lithium aluminate phase (31). The composite particles (30) have an internal porosity of 25% or less before being charged and discharged for the first time.Type: ApplicationFiled: February 8, 2023Publication date: May 15, 2025Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Takuya Jin, Taisuke Asano
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Publication number: 20250105259Abstract: A negative electrode active material for nonaqueous electrolyte secondary batteries according to the present invention is characterized by containing composite particles that contain SiC and at least one of Si and an Si alloy, and is also characterized in that the composite particles have a crystallite diameter of 2.0 mm to 5.0 nm as calculated from the half width of the diffraction peak of the (111) plane of SiC in an XRD pattern obtained by an X-ray diffraction method.Type: ApplicationFiled: January 17, 2023Publication date: March 27, 2025Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Takuya Jin, Yusuke Saito, Yosuke Sato, Taisuke Asano
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Publication number: 20240145721Abstract: Provided is a PTFE powder that is in a dry state, wherein the percentage of fibrous particles which have an aspect ratio of 1.5 or higher with respect to all particles is 20-60%, and the average major axis size of the fibrous particles is 1-20 ?m. A PTFE powder according to another embodiment of the present invention is in a dry state, wherein the percentage of fibrous particles which have an aspect ratio of 5 or higher with respect to all particles is 60% or more, and the average minor axis size of the fibrous particles is 1-20 ?m.Type: ApplicationFiled: May 24, 2021Publication date: May 2, 2024Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Reiko Izumi, Daisuke Katou, Takuya Jin, Shinichiro Kondo
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Publication number: 20230378468Abstract: With respect to this electrode, the coverage of the surface of a coated active material by a conductive material is from 10% to 60%; the mixture resistance of a electrode mixture material is 20 ?cm or less in cases where the electrode mixture material is divided into three equal parts in the thickness direction, namely into a first region, a second region and a third region from a core material side, the content (a) of a PTFE powder in the first region, the content (b) of the PTFE powder in the second region and the content (c) of the PTFE powder in the third region satisfy ?10%?(c?a)/(a+b+c)?10%.Type: ApplicationFiled: July 7, 2021Publication date: November 23, 2023Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Daisuke Katou, Reiko Izumi, Takuya Jin, Shinichiro Kondo
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Publication number: 20230339774Abstract: A method for producing a lithium-nickel composite oxide includes a step of sintering molded bodies of a mixture including a lithium-containing compound and a nickel-containing compound, in a container, to obtain sintered bodies. The ratio of space occupied by gaps between the molded bodies is 0.375 or greater.Type: ApplicationFiled: July 21, 2020Publication date: October 26, 2023Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Mitsuru Iwai, Takuya Jin, Daisuke Katou, Tomoo Takayama
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Publication number: 20230299261Abstract: This secondary battery electrode is provided with a core material configured from a metal foil that softens at less than or equal to 200° C. and an electrode mixture sheet which is bonded on the surface of the core material. The electrode mixture sheet includes an active material and a fibrous binder, and the active material bites into the core material, with the maximum bite depth at least 30% of the thickness of the core material. The fibrous binder may for example have polytetrafluoroethylene as the main component.Type: ApplicationFiled: January 19, 2021Publication date: September 21, 2023Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Shinichiro Kondo, Reiko Izumi, Daisuke Katou, Takuya Jin, Yosuke Takayama, Masateru Mikami
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Publication number: 20230104306Abstract: According to this method for producing an electrode, a fibrous binder is produced by fibrillating a particulate binder, which has a volume-based median diameter of from 5 to 100 µm, by means of the application of a shear force, and an electrode mixture is produced by mixing the fibrous binder with an active material, said electrode mixture having a solid content concentration of substantially 100%. It is preferable that the fibrillation is carried out so that the breaking peripheral velocity ratio of the electrode mixture is 8 or more. In addition, an electrode mixture sheet is produced by shaping the electrode mixture into a sheet form by rolling, and the electrode mixture sheet is subsequently bonded to a core material.Type: ApplicationFiled: January 19, 2021Publication date: April 6, 2023Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Reiko Izumi, Shinichiro Kondo, Daisuke Katou, Takuya Jin
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Publication number: 20230108728Abstract: This electrode for secondary batteries is provided with a core material and an electrode mixture sheet that is bonded to the surface of the core material. The electrode mixture sheet contains an active material, a fibrous first binder and a particulate second binder; and the second binder is mainly composed of a polyvinylidene fluoride, while having a volume-based median diameter of 50 µm or less. The first binder is mainly composed, for example, of a polytetrafluoroethylene.Type: ApplicationFiled: January 19, 2021Publication date: April 6, 2023Applicant: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Takuya Jin, Daisuke Katou, Shinichiro Kondo, Reiko Izumi, Masaya Ugaji
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Publication number: 20230057410Abstract: A method for producing a lithium-transition metal composite oxide, including steps of: preparing a mixture including a lithium-containing compound and a transition metal compound; obtaining a molded body of the mixture; and sintering the molded bodies in a container having at least one vent hole, to obtain sintered bodies.Type: ApplicationFiled: January 21, 2021Publication date: February 23, 2023Applicant: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD..Inventors: Daisuke Katou, Takuya Jin, Mitsuru Iwai, Tomoo Takayama
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Publication number: 20220396497Abstract: A method for producing a lithium-transition metal composite oxide includes steps of preparing a first mixture including a lithium-containing compound and a transition metal compound, obtaining a compressed body by compressing the first mixture at least once, obtaining a molded body by molding at least the compressed body, and obtaining a sintered body by sintering the molded body.Type: ApplicationFiled: October 13, 2020Publication date: December 15, 2022Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Mitsuru Iwai, Daisuke Katou, Takuya Jin, Tomoo Takayama
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Publication number: 20220059835Abstract: A method for producing a lithium-containing composite oxide, the method including: a first step of preparing a lithium hydroxide; a second step of heating a hydroxide containing nickel and a metal M1 other than lithium and nickel to 300° C. or higher and 800° C. or lower, to obtain a composite oxide containing the nickel and the metal M; a third step of mixing the lithium hydroxide and the composite oxide, to obtain a mixture; a fourth step of compression-molding the mixture, to obtain a molded body; and a fifth step of baking the molded body at 600° C. or higher and 850° C. or lower, to obtain a baked body.Type: ApplicationFiled: December 6, 2019Publication date: February 24, 2022Applicant: Panasonic Intellectual Property Management Co., Ltd.Inventors: Daisuke Katou, Tomoo Takayama, Takuya Jin, Mitsuru Iwai