繊維学部研究紹介英語版2026
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Outlook for researchOutlook for students after graduationandelectrochemicalOutlook for researchOutlook for students after graduationfuelelectrolyzersandWatertechnologieshydrogen-basedadvancingsocietyandpromotingdecarbonizationacrossawiderangeoffields.Ourresearchfocusesonthedurabledevelopmentprecious-metal-basedatthenanoscaletoexpandtheuseofhydrogenenergyandcontributetotherealizationofacleanandsustainablesociety.forefficientofhighlychemistry,Studentsinourlaboratorystudyelectrochemistry,inorganicfundamentalprinciplestopracticalapplications.Ourgraduatesgoontocareersinavarietyoffields,andelectronicdevices.andincludingautomotive,chemicalmaterials,Whatmakesmaterialsresearchsoexcitingisitspotentialtobecomeatruegamechangerforbothtechnologyandsociety.Ifwecandevelopearth-abundantmaterialscapableofstoringelectricalenergyrapidlyandinlargeamounts,energy-storagetechnologiescouldbedeployedmuchmorebroadlyandhelpacceleratetheuseofrenewableenergy.Withthegoalofachievingcarbonneutralityby2050,letusjoininexploringmaterialsresearchthatcanhelpshapeamoresustainablefuture.Assistant ProfessorTOKURA Yuki Dr. Eng. He worked as a and assistant Shinshu University, and started in 2024. His is materials science.Myresearchfocusesonlayeredinorganiccompoundsthatofferion-accessiblenanoscalespacesandabundantreactivesurfaces.Atthecoreofmyworkissyntheticchemistrythatenablesustopreciselydesignthemorphologyandinternalspacesofinorganicmaterials.Bycontrollingioninsertionandextraction,electronicproperties,andinterfacialreactions,weaimtocreatematerialswithawiderangeoffunctions,includingenergyconversion.Ultimately,ourgoalistodevelopmaterialstothatmakebetteruseofelectricalenergyforsupportingthedecarbonizationofpowerandfuels.Assistant ProfessorMURAMATSU KeisukeWaterelectrolyzersandfuelcellsarekeytechnologiesforrealizingacleanhydrogensociety.Ourlaboratoryfocusesonthedevelopmentofprecious-metal-basedelectrocatalystsbycontrollingtheirshape,size,andcompositionforefficienthydrogenproductionandutilization.Forinstance,preciousmetalnanosheetsexhibitremarkableperformancecomparedwithconventionalnanoparticles.Throughresearchattheatomicandnanometerscales,weaimtocreatenovelelectrocatalyststhatcontributetoasustainablesociety.ionseparation,storage,StaffFaculty ProfilefocuseslaboratoryOuronelectrolyzersandfuelcells.Precious-metalnanosheetslessthan1nmthickhaveshownexcellentperformancebecauseoftheirhighmetalutilizationandexcellentstability.experimentalsetupAnelectrocatalysts(Rotatingring-diskelectrode).includingelectrocatalystsforwaterevaluationsystemofTheconfinednanospaceinsidecaninorganicstoreaccommodatecharge.Weexploringnanospacedesignthatenablesioninsertionandextractiontooccuringreateramounts,athigherspeed,andwithgreaterselectivity.andcrystalsionsarea(2020, Keio Univ.)researcherinthencareerresearch fieldandprofessor current his electrochemistry inEngineering,Ph.D.(Waseda2021);.Univ.,JSPSPostdoctoralResearchFellow(ShinshuUniv.,2021);AssistantProfessor(ShinshuUniv.,November2021).Learninginchemistryandmaterialsscienceprovideshighlyversatileknowledgethatremainsvaluableacrosstheentiremanufacturingindustries.Buildingonthisstrongfoundation,Ihopestudentswilldeveloptheresilienceandinitiativetothinkindependentlytakeaction,,workwithothers,andmoveideasforwardinanyenvironment.arekeycellsandelectrocatalystscatalysisfromSyntheticchemistryforcontrollingthenano-morphologyoflayeredcompoundsandactivatingtheirnanoscalespacesThemorphologyandshapeofnanomaterialsplaysakeyroleindeterminingtheirfunctions.Forexample,asshownintheelectronmicroscopyimageabove,westudyuniquecolumnarlayeredmaterialswithalargenumberofhighlyreactiveedgesexposed.Institute for AquaregenerationInstitute for Aquaregeneration50Developing novel electrocatalystsfor a hydrogen-based societyDesigning inorganic nanomaterials to unlock extraordinary electrode functions

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