繊維学部研究紹介英語版2026
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AssistantProfessorKITAZAWA YuAssistantProfessorTAKIZAWATokihiroDepartment ofChemistry and MaterialsDepartment ofChemistry and MaterialsTakizawaProfessorAssistantgraduatedfromtheFunctionalPolymerScienceCourseintheFacultyofTextileScienceandTechnologyatShinshuUniversity.HetookhiscurrentpositionafterworkingintheFacultyasaresearchassociateandassistantprofessor.Hisareaofinterestisgeneralmaterialproperties.Ph.D. (Pharm.Sci.),The University of Tokyo.organicSpecializes synthesis physicalchemistry.organic Motto: "Creatingunprecedented molecules tocellularmanipulate functions.Iamstudyingtocreatenewmaterialsusingmicrowavesandtheirphysicalproperties.The"radiowaves",youthinkthatcommunicationapplicationssuchasradioandtelevision,satellitecommunications,mobilephones,wirelessLAN,etc.arethemainapplications.Now,everyhomehasa"Microwaveoven"alsousessimilar"radiowaves",butthisisnotadeviceforcommunicationtool.Sincecookingcanalsobethoughtofasachemicalprocess,Iamfurthersearchingfor"usageforchemistry,chemicalreactionsandchemicalprocesses"touseadvancedscienceandengineering.Creationofnovelmoleculesusingboronclusters:(a)J.Am.Chem.Soc.2026,148(10),10308–10314(b)JACSAu2025,5(4),1633–1640.Next-generationboronclustersWeaimtomakediscoveriesthatoverturnconventionalwisdominorganicchemistry.Thecell-penetratingcarrierswedevelopholdgreatpromiseforfuturemedicaltechnologies,includingtargeteddrugdeliverysystems(DDS)andnext-generationBoronNeutronCaptureTherapy(BNCT).Thisisanexcitingfieldwherefundamentalchemicalexplorationdirectlydrivestherealizationoftransformativebiomedicine.in and thinkingandpracticalStudentswilldeveloplogicalproblem-solvingskillsthroughindependentproblemdiscovery,organicsynthesis,theoreticalcalculations,andcellularevaluations.Weexpectourgraduatestobecomeglobalscientificleaders,excellinginR&Drolesacrossthechemical,pharmaceutical,andmaterialsindustries.conductcutting-edgeWesynthesis,computationalchemistry,andcellbiology,focusingontheprecisedesignoffunctional"anions."Bydevelopinguniquesyntheticmethods,wecanfreelymodifyhighlystable"boronclusters"topioneerunprecedentedreactions.Furthermore,weapplytheseinnovativemoleculestothelifesciences,developingnext-generationdrugdeliverysystems(DDS)thatefficientlypenetratecellmembranes.Wewelcomepassionatestudentswhowantto"createworld-firstmoleculeswiththeirownhands"and"contributetomedicinethroughthepoweroforganicchemistry.cell-penetratingIrradiatingmicrowavestoinorganicmaterials(forexample,carbonparticle)usingthedomesticmicrowaveoscillatorintheabovephoto,itispossibletocreateacompacthigh-temperaturefurnaceofabout800°C.orhigher.Thengaseousmethaneintocontactwithcarbon,itbecomesefficientconvertertogeneratehydrogen.Tacklingrealmsintegrationunprecedentedchemicalcross-disciplinarythroughorganicresearchintegratingOutlook for researchOutlook for students after graduationOutlook for researchTheoriginoftheresearchcanbeanything.Ifyouhaveyouwanttodo,wondering,firstofall,itisimportantto"thinkyourself"forthatsolution.somethingOutlook for students after graduationYoushouldbeabletopositivelyproposeprocesses(thingstodo)andsystems(concretesolutionstotheproblem)towardsissuestobesolvedinanyfield.37Microwave chemistryNext-Generation Cell-Penetrating Carriersthrough Precise Anion Design

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