Meijo Nano Carbon Co., Ltd.

Japon

Retour au propriétaire

1-33 de 33 pour Meijo Nano Carbon Co., Ltd. Trier par
Recheche Texte
Affiner par
Juridiction
        International 19
        États-Unis 14
Date
2025 septembre 2
2025 août 1
2025 juillet 1
2025 juin 1
2025 (AACJ) 7
Voir plus
Classe IPC
C01B 32/162 - Préparation caractérisée par les catalyseurs 8
B82Y 40/00 - Fabrication ou traitement des nanostructures 7
C01B 32/159 - Nanotubes de carbone mono-paroi 6
C01B 32/16 - Préparation 6
C01B 31/02 - Préparation du carbone; Purification 4
Voir plus
Statut
En Instance 6
Enregistré / En vigueur 27
Résultats pour  brevets

1.

DEVICE AND METHOD FOR PRODUCING CARBON NANOTUBES

      
Numéro d'application JP2025007039
Numéro de publication 2025/183137
Statut Délivré - en vigueur
Date de dépôt 2025-02-28
Date de publication 2025-09-04
Propriétaire
  • WASEDA UNIVERSITY (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Noda Suguru
  • Lang Jianghua
  • Naotsuka Yuki
  • Wen Yuli

Abrégé

A device and a method for producing carbon nanotubes are provided in which catalyst source vapor is rapidly heated and decomposed immediately downstream of an outlet of a catalyst source supply nozzle, thereby attaining both the suppression of nozzle clogging and the formation of catalyst particles at a high density. A device 1 for producing carbon nanotubes comprises: a synthesis furnace 2 for synthesizing carbon nanotubes; a carbon source flow path 3 for supplying a carbon source as a gas to the synthesis furnace 2; a catalyst source supply nozzle 4 for supplying, as vapor, a catalyst source for synthesizing carbon nanotubes to the synthesis furnace 2; and a catalyst-source heating mechanism 5 configured so that the catalyst source vapor supplied from the catalyst source supply nozzle 4 can be rapidly heated and decomposed immediately downstream of an outlet of the catalyst source supply nozzle 4.

Classes IPC  ?

2.

CARBON NANOTUBE PRODUCTION DEVICE AND CARBON NANOTUBE MANUFACTURING DEVICE

      
Numéro d'application JP2025005146
Numéro de publication 2025/182635
Statut Délivré - en vigueur
Date de dépôt 2025-02-17
Date de publication 2025-09-04
Propriétaire
  • DOWA THERMOTECH CO., LTD. (Japon)
  • MEIJO NANO CARBON CO.,LTD. (Japon)
Inventeur(s)
  • Fujita, Takahiro
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

A carbon nanotube production device for producing carbon nanotubes, said device comprising: a reaction tube to which a carbon nanotube starting material gas is supplied; a heater which is positioned at the periphery of the reaction tube; an insulating material which covers the outside of the heater; an enclosing case which surrounds and encloses the periphery of the reaction tube, and accommodates the heater and the insulating material; a supply port which supplies a shield gas to the interior of the enclosing case; and a discharge port which discharges the shield gas from the interior of the enclosing case.

Classes IPC  ?

  • C01B 32/164 - Préparation faisant intervenir des procédés continus
  • C23C 16/26 - Dépôt uniquement de carbone

3.

CARBON NANOTUBE COLLECTION DEVICE, CARBON NANOTUBE MANUFACTURING DEVICE, AND CARBONE NANOTUBE COLLECTION METHOD

      
Numéro d'application JP2025005145
Numéro de publication 2025/177985
Statut Délivré - en vigueur
Date de dépôt 2025-02-17
Date de publication 2025-08-28
Propriétaire
  • DOWA THERMOTECH CO., LTD. (Japon)
  • MEIJO NANO CARBON CO.,LTD. (Japon)
Inventeur(s)
  • Fujita, Takahiro
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

A carbon nanotube collection device for collecting carbon nanotubes produced by a carbon nanotube production device, said carbon nanotube collection device comprising: a collection chamber for collecting carbon nanotubes in a collection basket, an introduction chamber for introducing an empty collection basket into the collection chamber, and an extraction chamber for extracting a collection box in which carbon nanotubes have been collected from the collection chamber, and further comprising an introduction-side door for isolating the collection chamber and the introduction chamber, and an extraction-side door for isolating the collection chamber and the extraction chamber.

Classes IPC  ?

  • C01B 32/164 - Préparation faisant intervenir des procédés continus

4.

METHOD FOR PRODUCING CARBON NANOTUBES

      
Numéro d'application 18851138
Statut En instance
Date de dépôt 2023-03-29
Date de la première publication 2025-07-03
Propriétaire
  • OSAKA SODA CO., LTD. (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Hirayama, Daigo
  • Nakagawa, Akifumi
  • Taniyama, Naoshi
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

There is provided a novel method capable of producing high-purity single-walled carbon nanotubes with high efficiency, without concern for a decrease in the strength of a reaction tube. A method for producing carbon nanotubes by floating catalyst chemical vapor deposition (FC-CVD), comprising the step of producing carbon nanotubes by heating a feed for carbon nanotubes in the presence of an iron-containing catalyst and an alkali metal compound.

Classes IPC  ?

5.

Negative Electrode Active Material for Secondary Battery, Manufacturing Method Thereof, Negative Electrode for Secondary Battery and Secondary Battery

      
Numéro d'application 18846636
Statut En instance
Date de dépôt 2023-03-16
Date de la première publication 2025-06-19
Propriétaire
  • Shinshu University (Japon)
  • Meijo Nano Carbon Co., Ltd. (Japon)
Inventeur(s)
  • Zettsu, Nobuyuki
  • Kawabe, Natsumi

Abrégé

A negative electrode active material for a secondary battery (102) of the present invention contains an active material particle (106) which contains a silicon composite (103) and a self-assembled monolayer 104 that covers a surface of the silicon composite (103) and has an amino group and a binder (105) bonded to the self-assembled monolayer 104 through the amino group, and the binder (105) contains a first carbon nanotube having a length of 1000 nm or less and a second carbon nanotube having a length of 2 μm or more.

Classes IPC  ?

6.

CARBON NANOTUBE PRODUCTION DEVICE AND CARBON NANOTUBE PRODUCTION METHOD

      
Numéro d'application JP2024039177
Numéro de publication 2025/095131
Statut Délivré - en vigueur
Date de dépôt 2024-11-01
Date de publication 2025-05-08
Propriétaire
  • OSAKA SODA CO., LTD. (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Hirayama, Daigo
  • Nakagawa, Akifumi
  • Taniyama, Naoshi
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

Provided is, in relation to the technology of producing carbon nanotubes through chemical vapor deposition in the presence of an alkali metal compound, a new carbon nanotube production device that can efficiently produce carbon nanotubes continuously for a long period of time. This carbon nanotube production device is for producing carbon nanotubes through chemical vapor deposition, and comprises: a reaction container; a carbon material supply nozzle 1 for supplying a carbon material into the reaction container; and an alkali metal compound aqueous solution supply nozzle 2 for supplying an alkali metal compound aqueous solution into the reaction container. The alkali metal compound aqueous solution supply nozzle 2 is an ultrasonic wave atomization-type nozzle. When producing carbon nanotubes by supplying the carbon material into the reaction container from the carbon material supply nozzle 1, by supplying the alkali metal compound aqueous solution into the reaction container from the alkali metal compound aqueous solution supply nozzle 2 and by heating the carbon material inside the reaction container, the leading end of the alkali metal compound aqueous solution supply nozzle 2 is disposed at a position where the temperature inside the reaction container becomes 120°C or lower.

Classes IPC  ?

7.

DEVICE FOR COLLECTING CARBON NANOTUBES AND DEVICE FOR PRODUCING CARBON NANOTUBES

      
Numéro d'application JP2024031589
Numéro de publication 2025/053136
Statut Délivré - en vigueur
Date de dépôt 2024-09-03
Date de publication 2025-03-13
Propriétaire
  • DOWA THERMOTECH CO., LTD. (Japon)
  • MEIJO NANO CARBON CO.,LTD. (Japon)
Inventeur(s)
  • Fujita, Takahiro
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

Provided is a device for collecting carbon nanotubes which comprises: a collection chamber having an opening communicating with a device for yielding carbon nanotubes; and a removal mechanism for removing carbon-nanotube deposits attached to wall surfaces surrounding the opening. The removal mechanism comprises a removal member to be inserted into the deposits and a driving part for moving the removal member between a removal position and a retreat position. The driving part further has a configuration for rotating the removal member on the moving direction of the removal member as a rotation axis.

Classes IPC  ?

  • C01B 32/16 - Préparation
  • D01F 9/127 - Filaments de carboneAppareils spécialement adaptés à leur fabrication par décomposition thermique de gaz ou vapeurs d'hydrocarbures
  • D01F 9/133 - Appareils à cet effet

8.

Manufacturing apparatus and manufacturing method for carbon nanotube

      
Numéro d'application 18678425
Numéro de brevet 12269742
Statut Délivré - en vigueur
Date de dépôt 2024-05-30
Date de la première publication 2024-09-19
Date d'octroi 2025-04-08
Propriétaire
  • WASEDA UNIVERSITY (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Noda, Suguru
  • Namiki, Katsuya
  • Zhang, Zihao
  • Osawa, Toshio
  • Sugime, Hisashi

Abrégé

Provided are a carbon nanotube production device and production method capable of realizing high-temperature heating of a catalyst raw material in a floating catalyst chemical vapor deposition (FCCVD) method, and improving the quality and yield of carbon nanotubes synthesized. A carbon nanotube production device 1 includes a synthesis furnace 2 for synthesizing carbon nanotubes; a catalyst raw material supplying nozzle 3 for supplying a catalyst raw material used to synthesize carbon nanotubes to the synthesis furnace 2; and a nozzle temperature adjusting unit 6 capable of setting a temperature of an inner portion 4 of the catalyst raw material supplying nozzle 3 higher than a temperature of a reaction field 5 of the synthesis furnace 2. By supplying to the synthesis furnace 2 the catalyst raw material that has been thermally decomposed after being heated to a temperate at which a catalyst metal will not yet be condensed, and by having the thermally decomposed catalyst raw material rapidly cooled to a CVD temperature at the synthesis furnace 2, microscopic catalyst metal particles will be generated at a high density in the space of the reaction field 5 such that carbon nanotubes having a small diameter can be vapor-grown at a high density.

Classes IPC  ?

  • C01B 32/162 - Préparation caractérisée par les catalyseurs
  • B01J 4/00 - Dispositifs d'alimentationDispositifs de commande d'alimentation ou d'évacuation
  • B01J 6/00 - CalcinationCuisson
  • B82Y 40/00 - Fabrication ou traitement des nanostructures

9.

CARBON NANOTUBE COLLECTION APPARATUS, CARBON NANOTUBE MANUFACTURING APPARATUS, AND CARBON NANOTUBE COLLECTION METHOD

      
Numéro d'application 18274044
Statut En instance
Date de dépôt 2022-09-28
Date de la première publication 2024-07-25
Propriétaire
  • DOWA THERMOTECH CO., LTD. (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
  • OSAKA SODA CO., LTD. (Japon)
Inventeur(s)
  • Chou, Shinya
  • Kamioka, Maya
  • Fujita, Takahiro
  • Hashimoto, Takeshi
  • Takano, Kei
  • Kagawa, Hisato

Abrégé

A carbon nanotube collection apparatus includes: a collection room having an opening part communicating with a carbon nanotube production apparatus; a winding member arranged inside the collection room and configured to wind a carbon nanotube passed through the opening part from the carbon nanotube production apparatus to form a carbon nanotube wound body; and a separation mechanism configured to move the carbon nanotube wound body from a base end side toward a tip end side of the winding member to separate the carbon nanotube wound body from the winding member.

Classes IPC  ?

  • B65H 54/72 - BâtisCartersCouvercles
  • B65H 67/04 - Dispositions pour retirer les paquets d'enlèvement une fois garnis et les remplacer par des noyaux, gabarits ou récipients vides aux postes d'enroulage ou d'emmagasinageTransfert du matériau entre les éléments de prise adjacents pleins et vides
  • C01B 32/16 - Préparation
  • C01B 32/168 - Post-traitement

10.

CARBON NANOTUBE RECOVERING DEVICE, CARBON NANOTUBE PRODUCTION DEVICE, AND METHOD FOR RECOVERING CARBON NANOTUBES

      
Numéro d'application JP2023037391
Numéro de publication 2024/085113
Statut Délivré - en vigueur
Date de dépôt 2023-10-16
Date de publication 2024-04-25
Propriétaire
  • DOWA THERMOTECH CO., LTD. (Japon)
  • MEIJO NANO CARBON CO.,LTD. (Japon)
  • OSAKA SODA CO., LTD. (Japon)
Inventeur(s)
  • Fujita, Takahiro
  • Hashimoto, Takeshi
  • Takano, Kei
  • Kagawa, Hisato

Abrégé

This carbon nanotube recovering device is for recovering carbon nanotubes, and comprises: a winding chamber; a recovery chamber; a first gas discharge line for discharging a gas supplied to the recovery chamber; and a second gas discharge line for discharging a gas supplied to the winding chamber. The recovery chamber has: a first opening connected to the winding chamber; and an open/close mechanism that opens and closes the first opening. It is possible to change among discharging of gas from the first gas discharge line, discharging of gas from the second gas discharge line, and discharging of gas from both of the first and second gas discharge lines.

Classes IPC  ?

  • C01B 32/164 - Préparation faisant intervenir des procédés continus
  • D01F 9/12 - Filaments de carboneAppareils spécialement adaptés à leur fabrication
  • D01F 9/133 - Appareils à cet effet

11.

APPARATUS FOR RECOVERING CARBON NANOTUBES, APPARATUS FOR PRODUCING CARBON NANOTUBES, AND METHOD FOR RECOVERING CARBON NANOTUBES

      
Numéro d'application JP2023036036
Numéro de publication 2024/075719
Statut Délivré - en vigueur
Date de dépôt 2023-10-03
Date de publication 2024-04-11
Propriétaire
  • DOWA THERMOTECH CO., LTD. (Japon)
  • MEIJO NANO CARBON CO.,LTD. (Japon)
  • OSAKA SODA CO., LTD. (Japon)
Inventeur(s)
  • Fujita, Takahiro
  • Hashimoto, Takeshi
  • Takano, Kei
  • Kagawa, Hisato

Abrégé

An apparatus for recovering carbon nanotubes which is equipped with a recovery chamber for recovering carbon nanotubes, wherein: the recovery chamber has a housing and a storage container provided below the housing; the housing has a first opening which is connected to an apparatus for producing carbon nanotubes, an opening/closing mechanism for opening and closing the first opening, and a second opening which is connected to the storage container; and the storage container is removably attached to the housing.

Classes IPC  ?

12.

PRODUCTION METHOD FOR CARBON NANOTUBES

      
Numéro d'application JP2023013011
Numéro de publication 2023/190783
Statut Délivré - en vigueur
Date de dépôt 2023-03-29
Date de publication 2023-10-05
Propriétaire
  • OSAKA SODA CO., LTD. (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Hirayama, Daigo
  • Nakagawa, Akifumi
  • Taniyama, Naoshi
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

Provided is a new method capable of highly efficiently producing high-purity monolayer carbon nanotubes without the fear of a reduction in the strength of a reaction tube. This production method for carbon nanotubes by floating catalyst chemical vapor deposition (FC-CVD) comprises: a step for heating a raw material for carbon nanotubes in the presence of an iron-containing catalyst and an alkali metal compound to generate carbon nanotubes.

Classes IPC  ?

13.

APPARATUS FOR RECOVERING CARBON NANOTUBES, APPARATUS FOR PRODUCING CARBON NANOTUBES, AND METHOD FOR RECOVERING CARBON NANOTUBES

      
Numéro d'application JP2022036166
Numéro de publication 2023/058520
Statut Délivré - en vigueur
Date de dépôt 2022-09-28
Date de publication 2023-04-13
Propriétaire
  • DOWA THERMOTECH CO., LTD. (Japon)
  • MEIJO NANO CARBON CO.,LTD. (Japon)
  • OSAKA SODA CO., LTD. (Japon)
Inventeur(s)
  • Chou, Shinya
  • Kamioka, Maya
  • Fujita, Takahiro
  • Hashimoto, Takeshi
  • Takano, Kei
  • Kagawa, Hisato

Abrégé

The present invention provides an apparatus for recovering carbon nanotubes, the apparatus comprising: a recovery chamber which has an opening that leads to a carbon nanotube generation device; a winding member which is arranged within the recovery chamber so as to wind carbon nanotubes that have passed through the opening from the carbon nanotube generation device, thereby forming a carbon nanotube wound body; and a separation mechanism which separates the carbon nanotube wound body from the winding member by moving the carbon nanotube wound body from the base end side to the tip end side of the winding member.

Classes IPC  ?

  • C01B 32/16 - Préparation
  • D01F 9/127 - Filaments de carboneAppareils spécialement adaptés à leur fabrication par décomposition thermique de gaz ou vapeurs d'hydrocarbures

14.

Electrode structure

      
Numéro d'application 17812564
Numéro de brevet 12230415
Statut Délivré - en vigueur
Date de dépôt 2022-07-14
Date de la première publication 2023-02-09
Date d'octroi 2025-02-18
Propriétaire Meijo Nano Carbon Co., Ltd. (Japon)
Inventeur(s)
  • Hashimoto, Takeshi
  • Yana, Takumi

Abrégé

−2 Ω·cm.

Classes IPC  ?

  • H01B 1/04 - Conducteurs ou corps conducteurs caractérisés par les matériaux conducteurs utilisésEmploi de matériaux spécifiés comme conducteurs composés principalement soit de compositions à base de carbone-silicium, soit de carbone soit de silicium
  • H01G 11/24 - Électrodes caractérisées par les propriétés structurelles des matériaux composant les électrodes ou inclus dans les électrodes, p. ex. forme, surface ou porositéÉlectrodes caractérisées par les propriétés structurelles des poudres ou particules utilisées à cet effet
  • H01G 11/36 - Nanostructures, p. ex. nanofibres, nanotubes ou fullerènes
  • H01G 11/42 - Poudres ou particules, p. ex. composition de ces poudres ou particules
  • H01G 11/86 - Procédés de fabrication de condensateurs hybrides ou EDL ou de leurs composants spécialement adaptés pour les électrodes
  • H01M 4/02 - Électrodes composées d'un ou comprenant un matériau actif
  • H01M 4/133 - Électrodes à base de matériau carboné, p. ex. composés d'intercalation du graphite ou CFx
  • H01M 4/62 - Emploi de substances spécifiées inactives comme ingrédients pour les masses actives, p. ex. liants, charges
  • H01M 4/86 - Électrodes inertes ayant une activité catalytique, p. ex. pour piles à combustible
  • H01M 4/90 - Emploi de matériau catalytique spécifié
  • H01M 4/96 - Électrodes à base de carbone
  • H01M 8/10 - Éléments à combustible avec électrolytes solides
  • H01M 10/0525 - Batteries du type "rocking chair" ou "fauteuil à bascule", p. ex. batteries à insertion ou intercalation de lithium dans les deux électrodesBatteries à l'ion lithium
  • H01M 4/13 - Électrodes pour accumulateurs à électrolyte non aqueux, p. ex. pour accumulateurs au lithiumLeurs procédés de fabrication

15.

Apparatus and Method for Producing Carbon Nanotubes

      
Numéro d'application 17874481
Statut En instance
Date de dépôt 2022-07-27
Date de la première publication 2022-11-24
Propriétaire MEIJO NANO CARBON CO., LTD (Japon)
Inventeur(s)
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

A CNT production apparatus 1 provided by the present invention includes a cylindrical chamber 10 and a control valve 60 provided to a gas discharge pipe 50. The chamber 10 includes a reaction zone provided in a partial range of the chamber 10 in the direction of the cylinder axis, a deposition zone 22 which is provided downstream of the reaction zone 20, and a deposition state detector 40 that detects a physical property value indicating a deposition state of carbon nanotubes in the deposition zone 22. The apparatus is configured to close the control valve 60 and deposit carbon nanotubes in the deposition zone 22 when the physical property value detected by the deposition state detector 40 is equal to or less than a predetermined threshold value, and configured to open the control valve 60 and recover the carbon nanotubes deposited in the deposition zone 22 when the physical property value exceeds the predetermined threshold value.

Classes IPC  ?

16.

CARBON NANOTUBE PRODUCTION DEVICE AND PRODUCTION METHOD

      
Numéro d'application 17632730
Statut En instance
Date de dépôt 2020-07-27
Date de la première publication 2022-09-01
Propriétaire
  • WASEDA UNIVERSITY (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Noda, Suguru
  • Namiki, Katsuya
  • Zhang, Zihao
  • Osawa, Toshio
  • Sugime, Hisashi

Abrégé

Provided are a carbon nanotube production device and production method capable of realizing high-temperature heating of a catalyst raw material in a floating catalyst chemical vapor deposition (FCCVD) method, and improving the quality and yield of carbon nanotubes synthesized. A carbon nanotube production device 1 includes a synthesis furnace 2 for synthesizing carbon nanotubes; a catalyst raw material supplying nozzle 3 for supplying a catalyst raw material used to synthesize carbon nanotubes to the synthesis furnace 2; and a nozzle temperature adjusting unit 6 capable of setting a temperature of an inner portion 4 of the catalyst raw material supplying nozzle 3 higher than a temperature of a reaction field 5 of the synthesis furnace 2. By supplying to the synthesis furnace 2 the catalyst raw material that has been thermally decomposed after being heated to a temperate at which a catalyst metal will not yet be condensed, and by having the thermally decomposed catalyst raw material rapidly cooled to a CVD temperature at the synthesis furnace 2, microscopic catalyst metal particles will be generated at a high density in the space of the reaction field 5 such that carbon nanotubes having a small diameter can be vapor-grown at a high density.

Classes IPC  ?

  • C01B 32/162 - Préparation caractérisée par les catalyseurs
  • B01J 6/00 - CalcinationCuisson
  • B01J 4/00 - Dispositifs d'alimentationDispositifs de commande d'alimentation ou d'évacuation

17.

NEGATIVE ELECTRODE ACTIVE MATERIAL FOR RECHARGEABLE BATTERY, METHOD FOR PRODUCING THESAME, AND RECHARGEABLE BATTERY

      
Numéro d'application 17275022
Statut En instance
Date de dépôt 2019-11-22
Date de la première publication 2022-03-03
Propriétaire MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Zettsu, Nobuyuki
  • Teshima, Katsuya
  • Kim, Hyemin

Abrégé

A negative electrode active material for a rechargeable battery of the present invention includes a silicon composite composed of a silicon compound and at least one carbon material of graphite, non-graphitizable carbon, and soft carbon, a self-assembled monolayer which covers the surface of the silicon composite and has amino groups, and a carbon compound that is bonded to the self-assembled monolayer via the amino groups and contains carbon atoms as a main component.

Classes IPC  ?

  • H01M 4/38 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'éléments simples ou d'alliages
  • H01M 4/587 - Matériau carboné, p. ex. composés au graphite d'intercalation ou CFx pour insérer ou intercaler des métaux légers

18.

Method for producing carbon nanotubes

      
Numéro d'application 17264653
Numéro de brevet 11697592
Statut Délivré - en vigueur
Date de dépôt 2019-07-26
Date de la première publication 2021-10-28
Date d'octroi 2023-07-11
Propriétaire
  • Osaka Soda Co., Ltd. (Japon)
  • Meijo Nano Carbon Co., Ltd. (Japon)
Inventeur(s)
  • Iwasa, Naruhito
  • Hirayama, Daigo
  • Oda, Jitsuo
  • Miki, Yasushi
  • Kagawa, Hisato
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

2 is in the range of 1.0-2.3; and a step for bringing a gas, which is present in the environment in which the material (A) is being heated to 1200° C. or higher, into contact with a feed gas to generate carbon nanotubes.

Classes IPC  ?

  • C01B 32/162 - Préparation caractérisée par les catalyseurs
  • C01B 32/159 - Nanotubes de carbone mono-paroi
  • B01J 21/12 - Silice et alumine
  • B82Y 30/00 - Nanotechnologie pour matériaux ou science des surfaces, p. ex. nanocomposites
  • B82Y 40/00 - Fabrication ou traitement des nanostructures

19.

Positive electrode for lithium-ion rechargeable battery, lithium-ion rechargeable battery, and method for producing positive electrode for lithium-ion rechargeable battery

      
Numéro d'application 17275032
Numéro de brevet 11387445
Statut Délivré - en vigueur
Date de dépôt 2019-11-22
Date de la première publication 2021-10-07
Date d'octroi 2022-07-12
Propriétaire MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Zettsu, Nobuyuki
  • Teshima, Katsuya
  • Kim, Daewook

Abrégé

There is provided a positive electrode for a lithium-ion rechargeable battery in which it is possible to achieve both exceptional electrical conductivity and adhesion of an electrode active material to a current collector and it is possible to dramatically improve battery characteristics compared to those in the related art. A positive electrode for a lithium-ion rechargeable battery includes a current collector; and an electrode active material-containing layer provided on the current collector, wherein the electrode active material-containing layer contains active material particles and a conductive material that connects the active material particles to each other; wherein the mass ratio of the active material particles:the conductive material:other components in the electrode active material-containing layer is 95 to 99.7:0.3 to 5:0 to 1, wherein the conductive material includes a first elongated carbon material having a first length and a second elongated carbon material having a second length larger than the first length, and wherein the ratio of the second length to the first length is 2 or more and 50 or less.

Classes IPC  ?

  • H01M 4/139 - Procédés de fabrication
  • H01M 4/04 - Procédés de fabrication en général
  • H01M 4/62 - Emploi de substances spécifiées inactives comme ingrédients pour les masses actives, p. ex. liants, charges
  • H01M 10/0525 - Batteries du type "rocking chair" ou "fauteuil à bascule", p. ex. batteries à insertion ou intercalation de lithium dans les deux électrodesBatteries à l'ion lithium
  • H01M 4/02 - Électrodes composées d'un ou comprenant un matériau actif

20.

MANUFACTURING APPARATUS AND MANUFACTURING METHOD FOR CARBON NANOTUBE

      
Numéro d'application JP2020028754
Numéro de publication 2021/029212
Statut Délivré - en vigueur
Date de dépôt 2020-07-27
Date de publication 2021-02-18
Propriétaire
  • WASEDA UNIVERSITY (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Noda, Suguru
  • Namiki, Katsuya
  • Zhang, Zihao
  • Osawa, Toshio
  • Sugime, Hisashi

Abrégé

Provided are a manufacturing apparatus and a manufacturing method for a carbon nanotube, which can achieve high-temperature heating of a catalyst raw material in a floating catalyst chemical vapor deposition (FCCVD) method, and can improve the quality and the yield of synthesized carbon nanotubes. The manufacturing apparatus 1 for a carbon nanotube comprises: a synthesis furnace 2 that synthesizes a carbon nanotube; a catalyst raw material supply nozzle 3 that supplies, to the synthesis furnace 2, a catalyst raw material for synthesizing the carbon nanotube; and a nozzle temperature adjustment means 6 which can set the temperature of a cavity part 4 of the catalyst raw material supply nozzle 3 to be higher than the temperature of a reaction field 5 of the synthesis furnace 2. The catalyst raw material is heated to a temperature at which catalyst metal is not condensed, the thermally decomposed catalyst raw material is supplied to the synthesis furnace 2, and the thermally decomposed catalyst raw material is rapidly cooled to the CVD temperature in the synthesis furnace 2 to generate fine catalyst metal particles at high density in a space of the reaction field 5, so that the carbon nanotube having a small diameter can be vapor-phase-grown at high density.

Classes IPC  ?

  • C01B 32/162 - Préparation caractérisée par les catalyseurs
  • B82Y 40/00 - Fabrication ou traitement des nanostructures
  • C01B 32/159 - Nanotubes de carbone mono-paroi

21.

METHOD AND DEVICE FOR PURIFYING CARBON NANOTUBES

      
Numéro d'application JP2020007390
Numéro de publication 2020/175450
Statut Délivré - en vigueur
Date de dépôt 2020-02-25
Date de publication 2020-09-03
Propriétaire
  • WASEDA UNIVERSITY (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Noda, Suguru
  • Tanaka, Hideaki
  • Ohashi, Kei
  • Ohsawa, Toshio

Abrégé

Provided are a method and a device for purifying carbon nanotubes, wherein the vapor pressure of an etching agent at 25°C is lower than 100 Pa so that the leaked etching agent, if any, is precipitated in the form of liquid droplets or a powder and thus the risk of accidents can be largely reduced. The method for purifying carbon nanotubes comprises heating catalytic metal-containing carbon nanotubes 1, which are synthesized by using a catalytic metal 2, and a metal halide 15 and thus bringing the vapor of the metal halide 15 into contact with the catalytic metal-containing carbon nanotubes 1 to thereby remove the catalytic metal 2.

Classes IPC  ?

22.

METHOD FOR PRODUCING CARBON NANOTUBES

      
Numéro d'application JP2019029533
Numéro de publication 2020/027000
Statut Délivré - en vigueur
Date de dépôt 2019-07-26
Date de publication 2020-02-06
Propriétaire
  • OSAKA SODA CO., LTD. (Japon)
  • MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Iwasa, Naruhito
  • Hirayama, Daigo
  • Oda, Jitsuo
  • Miki, Yasushi
  • Kagawa, Hisato
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

2322322 is in the range of 1.0-2.3; and a step for bringing a gas, which is present in the environment in which the material (A) is being heated to 1200°C or higher, into contact with a feed gas to generate carbon nanotubes.

Classes IPC  ?

23.

CARBYNE-CONTAINING COMPOSITE MATERIAL

      
Numéro d'application JP2018031025
Numéro de publication 2019/039516
Statut Délivré - en vigueur
Date de dépôt 2018-08-22
Date de publication 2019-02-28
Propriétaire MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Hashimoto, Takeshi
  • Hashimoto, Satoru
  • Saito, Yahachi
  • Toma, Satoshi

Abrégé

LCC/G*LCC/GLCC/GLCC/G*LCC/G*×100

Classes IPC  ?

  • C01B 32/158 - Nanotubes de carbone
  • B82Y 30/00 - Nanotechnologie pour matériaux ou science des surfaces, p. ex. nanocomposites
  • B82Y 40/00 - Fabrication ou traitement des nanostructures
  • C01B 32/15 - Matières carbonées nanométriques
  • C01B 32/159 - Nanotubes de carbone mono-paroi
  • C01B 32/178 - OuvertureRemplissage

24.

ELECTRODE STRUCTURE

      
Numéro d'application JP2017018076
Numéro de publication 2017/199884
Statut Délivré - en vigueur
Date de dépôt 2017-05-12
Date de publication 2017-11-23
Propriétaire MEIJO NANO CARBON CO.,LTD. (Japon)
Inventeur(s)
  • Hashimoto, Takeshi
  • Yana, Takumi

Abrégé

An electrode structure for electronic devices according to the present invention comprises: an electrode material in the form of a powder; and carbon nanotubes having a volume resistivity of 2 × 10-2 Ω·cm or less.

Classes IPC  ?

  • H01M 4/02 - Électrodes composées d'un ou comprenant un matériau actif
  • H01G 11/24 - Électrodes caractérisées par les propriétés structurelles des matériaux composant les électrodes ou inclus dans les électrodes, p. ex. forme, surface ou porositéÉlectrodes caractérisées par les propriétés structurelles des poudres ou particules utilisées à cet effet
  • H01G 11/36 - Nanostructures, p. ex. nanofibres, nanotubes ou fullerènes
  • H01M 4/62 - Emploi de substances spécifiées inactives comme ingrédients pour les masses actives, p. ex. liants, charges
  • H01M 4/86 - Électrodes inertes ayant une activité catalytique, p. ex. pour piles à combustible
  • H01M 4/96 - Électrodes à base de carbone
  • H01M 8/10 - Éléments à combustible avec électrolytes solides
  • H01M 4/13 - Électrodes pour accumulateurs à électrolyte non aqueux, p. ex. pour accumulateurs au lithiumLeurs procédés de fabrication

25.

DEVICE AND METHOD FOR MANUFACTURING CARBON NANOTUBES

      
Numéro d'application JP2016079159
Numéro de publication 2017/057751
Statut Délivré - en vigueur
Date de dépôt 2016-09-30
Date de publication 2017-04-06
Propriétaire MEIJO NANO CARBON CO.,LTD. (Japon)
Inventeur(s)
  • Hashimoto, Takeshi
  • Takano, Kei

Abrégé

A CNT manufacturing device 1 provided by the present invention is provided with a cylindrical chamber 10, and a control valve 60 provided to an exhaust pipe 50. The chamber 10 is provided with a reaction zone 20 provided in a partial range of the chamber 10 in the cylinder axial direction of the chamber 10, an accumulation zone 22 provided downstream relative to the reaction zone 20, and an accumulation state sensing unit 40 for sensing a physical value indicating the accumulation state of carbon nanotubes in the accumulation zone 22. The present invention is configured so that the control valve 60 is closed and carbon nanotubes accumulate in the accumulation zone 22 when the physical value sensed by the accumulation state sensing unit 40 is equal to or less than a threshold value, and the control valve 60 is opened and carbon nanotubes accumulated in the accumulation zone 22 are recovered when the physical value exceeds the predetermined threshold value.

Classes IPC  ?

  • B82Y 40/00 - Fabrication ou traitement des nanostructures

26.

CARBON NANOTUBE DISPERSION AND METHOD FOR MANUFACTURING DISPERSION

      
Numéro d'application JP2012071581
Numéro de publication 2014/033810
Statut Délivré - en vigueur
Date de dépôt 2012-08-27
Date de publication 2014-03-06
Propriétaire MEIJO NANO CARBON CO.,LTD. (Japon)
Inventeur(s) Hashimoto Takeshi

Abrégé

Disclosed is a manufacturing method which comprises: loading a liquid medium into a dispersing container; loading carbon nanotubes into the dispersing container and adjusting the viscosity of the contents of the dispersing container to a prescribed load target value; and subjecting the contents of the dispersing container to a dispersion treatment using an annular gap type bead mill to achieve a prescribed dispersion target value for the viscosity of the contents. This manufacturing method is characterized in that the loading of the carbon nanotubes and the dispersion treatment are repeated until the carbon nanotube concentration in the contents of the dispersing container reaches a desired value. According to this manufacturing method, even a high concentration carbon nanotube dispersion can be homogeneously dispersed.

Classes IPC  ?

  • C01B 31/02 - Préparation du carbone; Purification
  • B01J 13/00 - Chimie des colloïdes, p. ex. production de substances colloïdales ou de leurs solutions, non prévue ailleursFabrication de microcapsules ou de microbilles

27.

Process and apparatus for producing composite material that includes carbon nanotubes

      
Numéro d'application 13201747
Numéro de brevet 08709539
Statut Délivré - en vigueur
Date de dépôt 2010-02-02
Date de la première publication 2012-01-12
Date d'octroi 2014-04-29
Propriétaire
  • Meijo University (Japon)
  • Meijo Nano Carbon Co., Ltd. (Japon)
  • Masuoka Ceramic Materials Co., Ltd. (Japon)
Inventeur(s)
  • Ando, Yoshinori
  • Kumar, Mukul
  • Hashimoto, Takeshi
  • Kurauchi, Norio
  • Masuoka, Hirotaka
  • Kagohashi, Akira

Abrégé

A process and an apparatus for producing a composite material utilize a rotatable hollow body that is inclined with an upstream side being higher than a downstream side. A reaction zone is defined within an elongated chamber in the hollow body. Protrusions inwardly extend from an inner peripheral wall of the hollow body adjacent to the reaction zone. Base material is input into the chamber via a base material introduction port and a carbon source vapor is input into the chamber via a carbon source supply port. A heater heats the reaction zone to a temperature at which carbon nanotubes form on the base material from the carbon source vapor. The protrusions catch base material disposed on the inner peripheral wall of the hollow body when the hollow body rotates and then drop the base material through the reaction zone so that the base material contacts the carbon source vapor.

Classes IPC  ?

28.

Carbon nanotube dispersion and utilization of same

      
Numéro d'application 12866548
Numéro de brevet 09181090
Statut Délivré - en vigueur
Date de dépôt 2008-02-08
Date de la première publication 2010-12-30
Date d'octroi 2015-11-10
Propriétaire MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s) Hashimoto, Takeshi

Abrégé

The present invention provides a carbon nanotube dispersion, in which carbon nanotubes are uniformly dispersed and a satisfactory dispersed state is maintained over a long period of time, and also inherent properties of carbon nanotubes can be exhibited. The carbon nanotube dispersion contains an alcohol solvent (preferably a lower alcohol having about 1 to 4 carbon atoms) and a polyvinyl acetal resin.

Classes IPC  ?

  • C08K 5/05 - AlcoolsAlcoolates métalliques
  • B82Y 30/00 - Nanotechnologie pour matériaux ou science des surfaces, p. ex. nanocomposites
  • B82Y 40/00 - Fabrication ou traitement des nanostructures
  • C01B 31/02 - Préparation du carbone; Purification

29.

Cell culture vessel and method of production thereof

      
Numéro d'application 12747826
Numéro de brevet 09217130
Statut Délivré - en vigueur
Date de dépôt 2008-12-11
Date de la première publication 2010-10-28
Date d'octroi 2015-12-22
Propriétaire MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Hashimoto, Takeshi
  • Akasaka, Tsukasa
  • Yokoyama, Atsuro
  • Watari, Fumio

Abrégé

Disclosed is a method of producing a cell culture vessel (10) having a carbon nanotube (CNT) layer (14) on its surface. The method comprises the steps of providing a vessel (12) having a predetermined shape; providing a CNT dispersion of a CNT material composed primarily of CNT dispersed in a dispersion medium at a concentration of not more than 50 mg/L; and forming the carbon nanotube layer (14) on the surface of the vessel (12). The formation of the CNT layer (14) is achieved by alternately repeating a supply step of applying the CNT dispersion solution to the vessel (12) and a drying step of drying the applied dispersion solution one or more times.

Classes IPC  ?

  • C12N 5/071 - Cellules ou tissus de vertébrés, p. ex. cellules humaines ou tissus humains
  • C12M 1/42 - Appareils pour le traitement de micro-organismes ou d'enzymes au moyen d'énergie électrique ou ondulatoire, p. ex. magnétisme, ondes sonores
  • C12M 1/32 - Inoculateur ou échantillonneur du type à champs multiples ou en continu
  • C12M 1/00 - Appareillage pour l'enzymologie ou la microbiologie

30.

Method for producing carbon nanotube-containing conductor

      
Numéro d'application 12746679
Numéro de brevet 08778116
Statut Délivré - en vigueur
Date de dépôt 2008-12-02
Date de la première publication 2010-10-07
Date d'octroi 2014-07-15
Propriétaire MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Morimoto, Yoshiyuki
  • Kubosaki, Nobuo
  • Nakamura, Noriyuki
  • Sumita, Yuzo

Abrégé

A method for producing a carbon nanotube-containing conductor having a conductive layer on the surface of an objective substrate, the method including: pressing a carbon nanotube network layer, via a release substrate having the carbon nanotube network layer thereon, against a transparent objective substrate coated with an electron beam-curable liquid resin composition to infiltrate the liquid resin composition into the carbon nanotube network layer; irradiating it with electron beams to cure the liquid resin composition; and peeling away the release substrate to obtain an objective substrate having a resin composition layer with carbon nanotubes embedded in the surface thereof.

Classes IPC  ?

31.

PROCESS AND APPARATUS FOR PRODUCING COMPOSITE MATERIAL

      
Numéro d'application JP2010051427
Numéro de publication 2010/095509
Statut Délivré - en vigueur
Date de dépôt 2010-02-02
Date de publication 2010-08-26
Propriétaire
  • MEIJO UNIVERSITY (Japon)
  • MEIJO NANO CARBON CO.,LTD. (Japon)
  • MASUOKA CERAMIC MATERIALS CO.,LTD (Japon)
  • TAKASAGO INDUSTRY CO.,LTD. (Japon)
Inventeur(s)
  • Ando Yoshinori
  • Kumar Mukul
  • Hashimoto Takeshi
  • Kurauchi Norio
  • Masuoka Hirotaka
  • Kagohashi Akira

Abrégé

A process for efficiently producing a composite material comprising a base and carbon nanotubes (CNTs) deposited on the surface thereof, on the basis of a CVD method.  The process comprises: feeding a CNT-supporting base (P) and a carbon-source vapor (V) to the heatable chamber of a cylinder (10), the cylinder (10) having been disposed obliquely so that the cylinder can be rotated on the major axis and one end (10a) of the major axis is located above; and yielding CNTs on the surface of the base.  The positions of a CNT-supporting-base introduction part (30) and a carbon-source-vapor supply part (40) are determined so that the CNT-supporting base comes into contact with the carbon-source vapor in a reaction zone (12) disposed in at least some of an upstream-side region within the chamber.  Protrusions (20) have been disposed on the inner circumferential wall of the chamber.  Due to this, by rotating the cylinder, the CNT-supporting base is moved from the upstream side to the downstream side of the cylinder while repeatedly being caught in and lifted up with the protrusions and falling.

Classes IPC  ?

32.

CARBON NANOTUBE DISPERSION AND UTILIZATION OF THE SAME

      
Numéro d'application JP2008052153
Numéro de publication 2009/098779
Statut Délivré - en vigueur
Date de dépôt 2008-02-08
Date de publication 2009-08-13
Propriétaire MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s) Hashimoto, Takeshi

Abrégé

It is intended to provide a carbon nanotube dispersion wherein carbon nanotubes are uniformly dispersed and can exert the characteristics inherent to the carbon nanotubes while sustaining a favorable dispersion state over a long period of time. This carbon nanotube dispersion contains an alcoholic solvent (preferably a lower alcohol having from about 1 to about 4 carbon atoms) and a polyvinyl acetal resin.

Classes IPC  ?

  • C08L 29/14 - Homopolymères ou copolymères d'acétals ou de cétals obtenus par polymérisation d'acétals ou de cétals non saturés ou par post-traitement des polymères d'alcools non saturés
  • C01B 31/02 - Préparation du carbone; Purification
  • C08K 3/04 - Carbone

33.

CELL CULTURE VESSEL AND METHOD FOR PRODUCTION THEREOF

      
Numéro d'application JP2008072521
Numéro de publication 2009/078333
Statut Délivré - en vigueur
Date de dépôt 2008-12-11
Date de publication 2009-06-25
Propriétaire MEIJO NANO CARBON CO., LTD. (Japon)
Inventeur(s)
  • Hashimoto, Takeshi
  • Akasaka, Tsukasa
  • Yokoyama, Atsuro
  • Watari, Fumio

Abrégé

Disclosed is a method for producing a cell culture vessel (10) having a carbon nanotube (CNT) layer (14) on its surface. The method comprises the steps of: providing a vessel (12) having a predetermined shape; providing a CNT dispersion solution comprising a dispersion medium and a CNT material mainly composed of a CNT and dispersed in the dispersion medium at a concentration of 50 mg/L or less; and forming the CNT layer (14) on the surface of the vessel (12). The formation of the CNT layer (14) is achieved by alternately repeating a supply step of applying the CNT dispersion solution on the vessel (12) and a drying step of drying the applied dispersion solution once or more times.

Classes IPC  ?

  • C12M 1/00 - Appareillage pour l'enzymologie ou la microbiologie
  • C12M 3/00 - Appareillage pour la culture de tissus, de cellules humaines, animales ou végétales, ou de virus