ION CONDUCTOR CONTAINING HIGH-TEMPERATURE PHASE OF LICB9H10 AND METHOD FOR PRODUCING SAME

The present invention is capable of providing a method for producing an ion conductor containing LiCB9H10 and LiCB11H12, said method being characterized by comprising: a solution formation step wherein a homogeneous solution is prepared by mixing LiCB9H10 and LiCB11H12 in a solvent at a LiCB9H10/LiC...

Full description

Saved in:
Bibliographic Details
Main Authors NOGUCHI, KEITA, MATSUURA, YUTAKA, ORIMO, SHIN-ICHI, NOGAMI, GENKI, KIM, SANGRYUN, KISU, KAZUAKI
Format Patent
LanguageEnglish
French
Published 26.08.2021
Subjects
Online AccessGet full text

Cover

Loading…
Abstract The present invention is capable of providing a method for producing an ion conductor containing LiCB9H10 and LiCB11H12, said method being characterized by comprising: a solution formation step wherein a homogeneous solution is prepared by mixing LiCB9H10 and LiCB11H12 in a solvent at a LiCB9H10/LiCB11H12 molar ratio of from 1.1 to 20; a drying step wherein a precursor is obtained by removing the solvent from the homogeneous solution; and a heat treatment step wherein an ion conductor is obtained by subjecting the precursor to a heat treatment. L'invention permet de fournir un procédé de fabrication de conducteur ionique contenant un LiCB9H10 et un LiCB11H12. Ce procédé de fabrication de conducteur ionique est caractéristique en ce qu'il inclut : une étape de mise en solution au cours de laquelle le LiCB9H10 et le LiCB11H12, sont mélangés dans un solvant selon un rapport molaire tel que LiCB9H10/LiCB11H12=1,1~20, et une solution homogène est ainsi préparée ; une étape de séchage au cours de laquelle ledit solvant est retiré de ladite solution homogène, et un précurseur est ainsi obtenu ; et une étape de traitement thermique au cours de laquelle ledit précurseur est soumis à un traitement thermique, et un conducteur ionique est ainsi obtenu.
AbstractList The present invention is capable of providing a method for producing an ion conductor containing LiCB9H10 and LiCB11H12, said method being characterized by comprising: a solution formation step wherein a homogeneous solution is prepared by mixing LiCB9H10 and LiCB11H12 in a solvent at a LiCB9H10/LiCB11H12 molar ratio of from 1.1 to 20; a drying step wherein a precursor is obtained by removing the solvent from the homogeneous solution; and a heat treatment step wherein an ion conductor is obtained by subjecting the precursor to a heat treatment. L'invention permet de fournir un procédé de fabrication de conducteur ionique contenant un LiCB9H10 et un LiCB11H12. Ce procédé de fabrication de conducteur ionique est caractéristique en ce qu'il inclut : une étape de mise en solution au cours de laquelle le LiCB9H10 et le LiCB11H12, sont mélangés dans un solvant selon un rapport molaire tel que LiCB9H10/LiCB11H12=1,1~20, et une solution homogène est ainsi préparée ; une étape de séchage au cours de laquelle ledit solvant est retiré de ladite solution homogène, et un précurseur est ainsi obtenu ; et une étape de traitement thermique au cours de laquelle ledit précurseur est soumis à un traitement thermique, et un conducteur ionique est ainsi obtenu.
Author NOGUCHI, KEITA
NOGAMI, GENKI
ORIMO, SHIN-ICHI
KIM, SANGRYUN
KISU, KAZUAKI
MATSUURA, YUTAKA
Author_xml – fullname: NOGUCHI, KEITA
– fullname: MATSUURA, YUTAKA
– fullname: ORIMO, SHIN-ICHI
– fullname: NOGAMI, GENKI
– fullname: KIM, SANGRYUN
– fullname: KISU, KAZUAKI
BookMark eNqNjE0KgzAQRrNoF_27w1xAiIgUl9M4MYGaSBwXXYmUdFVUsPenCj1AV99bvPcdxW6cxngQD-sdKO_KTrEPGzFaZ10FxlYmYaobCshdIGgMtgRew92qW2FSCehKqImNL0GvcRP8erO1LdZ0FvvX8F7i5bcnAZpYmSTOUx-XeXjGMX56hVl6lbnMMc3-UL7JNjI4
ContentType Patent
DBID EVB
DatabaseName esp@cenet
DatabaseTitleList
Database_xml – sequence: 1
  dbid: EVB
  name: esp@cenet
  url: http://worldwide.espacenet.com/singleLineSearch?locale=en_EP
  sourceTypes: Open Access Repository
DeliveryMethod fulltext_linktorsrc
Discipline Medicine
Chemistry
Sciences
DocumentTitleAlternate CONDUCTEUR IONIQUE CONTENANT UNE PHASE HAUTE TEMPERATURE DE LICB9H10, ET PROCEDE DE FABRICATION DE CELUI-CI
ExternalDocumentID CA3170505A1
GroupedDBID EVB
ID FETCH-epo_espacenet_CA3170505A13
IEDL.DBID EVB
IngestDate Fri Jul 19 13:04:24 EDT 2024
IsOpenAccess true
IsPeerReviewed false
IsScholarly false
Language English
French
LinkModel DirectLink
MergedId FETCHMERGED-epo_espacenet_CA3170505A13
Notes Application Number: CA20213170505
OpenAccessLink https://worldwide.espacenet.com/publicationDetails/biblio?FT=D&date=20210826&DB=EPODOC&CC=CA&NR=3170505A1
ParticipantIDs epo_espacenet_CA3170505A1
PublicationCentury 2000
PublicationDate 20210826
PublicationDateYYYYMMDD 2021-08-26
PublicationDate_xml – month: 08
  year: 2021
  text: 20210826
  day: 26
PublicationDecade 2020
PublicationYear 2021
RelatedCompanies MITSUBISHI GAS CHEMICAL COMPANY, INC
TOHOKU TECHNO ARCH CO., LTD
RelatedCompanies_xml – name: MITSUBISHI GAS CHEMICAL COMPANY, INC
– name: TOHOKU TECHNO ARCH CO., LTD
Score 3.3448243
Snippet The present invention is capable of providing a method for producing an ion conductor containing LiCB9H10 and LiCB11H12, said method being characterized by...
SourceID epo
SourceType Open Access Repository
SubjectTerms AFTER-TREATMENT OF SINGLE CRYSTALS OR A HOMOGENEOUSPOLYCRYSTALLINE MATERIAL WITH DEFINED STRUCTURE
APPARATUS THEREFOR
BASIC ELECTRIC ELEMENTS
CABLES
CHEMISTRY
CONDUCTORS
CRYSTAL GROWTH
ELECTRICITY
INSULATORS
METALLURGY
PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSIONOF CHEMICAL INTO ELECTRICAL ENERGY
PRODUCTION OF A HOMOGENEOUS POLYCRYSTALLINE MATERIAL WITHDEFINED STRUCTURE
REFINING BY ZONE-MELTING OF MATERIAL
SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING ORDIELECTRIC PROPERTIES
SINGLE CRYSTALS OR HOMOGENEOUS POLYCRYSTALLINE MATERIAL WITHDEFINED STRUCTURE
SINGLE-CRYSTAL-GROWTH
UNIDIRECTIONAL SOLIDIFICATION OF EUTECTIC MATERIAL ORUNIDIRECTIONAL DEMIXING OF EUTECTOID MATERIAL
Title ION CONDUCTOR CONTAINING HIGH-TEMPERATURE PHASE OF LICB9H10 AND METHOD FOR PRODUCING SAME
URI https://worldwide.espacenet.com/publicationDetails/biblio?FT=D&date=20210826&DB=EPODOC&locale=&CC=CA&NR=3170505A1
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwfV3NT8IwFG8IGvWmqBH8SA9mt0Vgo2yHxZS2YzNuXcYweCJsQMJlEJnx3_e1AfSit6ZNX9qXvI_f63uvCD3m7hLMQN437WLumLZFiDlzbV2NBgbFXSqnXWVbxCQY2y-T3qSGVvtaGN0n9Es3RwSJKkDeK62vNz9BLK5zK7dP-Qqm1s9-5nFjh44Bv4C7bPCBJxLJJTMY8xg14tSzVNuYdo8CUDpSXrRqsy_eBqooZfPbovjn6DgBYmV1gWqLsoFO2f7jtQY6iXbv3TDcid72Er2D0sNMxnzMMpmqUUbDOIyHOAiHgZmJKBGpTmLASUBHAksfv4Zs4AadNqYxx5HIAskxoD6cpBLIqL0jGokrhH2RscCEM04P_JgyeriNdY3q5bpc3CBMHDLv9gGRWLO5XTi54wDu7cwKF1QhydtWEzX_JNP6Z-0WnSnGqjhql9yhevXxubgHQ1zlD5qF302Ngy0
link.rule.ids 230,309,786,891,25594,76906
linkProvider European Patent Office
linkToHtml http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwfV3dT8IwEL8QNOKbokbwqw9mb4vAxtgeFjO6jU5Zu4xh8ImwAQkvg8iM_77XBdAXfWva9NJech-_690V4DG1lmgG0p6qZ3NT1TXDUGeWXlajoUGxltJpl9kW3GBj_WXSnVRgta-FKfuEfpXNEVGiMpT3otTXm58gllvmVm6f0hVOrZ_9xHaVHTpG_ILusuL2bS8SrqAKpTZ1FB7bmmwb0-o6CJSOerI5r_Sc3vqyKGXz26L4Z3AcIbG8OIfKIq9Dje4_XqvDSbh778bhTvS2F_COSo9Qwd0xTUQsR4kT8IAPCAsGTE28MPLiMomBRMwZeUT4ZBjQvsXaLeJwl4RewoRLEPWRKBZIRu4dOaF3CcT3EspUPOP0wI8pdQ630a6gmq_zxTUQwzTmnR4iEm021zMzNU3Eve1ZZqEqNNKW1oDGn2Sa_6w9QI0l4XA6DPjrDZxKJsuYase4hWrx8bm4Q6NcpPclO78BmKWGGg
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Apatent&rft.title=ION+CONDUCTOR+CONTAINING+HIGH-TEMPERATURE+PHASE+OF+LICB9H10+AND+METHOD+FOR+PRODUCING+SAME&rft.inventor=NOGUCHI%2C+KEITA&rft.inventor=MATSUURA%2C+YUTAKA&rft.inventor=ORIMO%2C+SHIN-ICHI&rft.inventor=NOGAMI%2C+GENKI&rft.inventor=KIM%2C+SANGRYUN&rft.inventor=KISU%2C+KAZUAKI&rft.date=2021-08-26&rft.externalDBID=A1&rft.externalDocID=CA3170505A1