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留学博士研究生培养方案英文版
附件4、留学博士研究生培养方案英文版
Ph.D.DegreePrograminMaterialsScienceandEngineering
Disciplinecode:
0805
Ⅰ.ADMISSION
Ph.D.degreeprograminMaterialsScience&EngineeringoffersgraduatestudentswiththePhDdegreePrograminMaterialsScience&Engineering.Theprogramaimsatbringingaboutadequatepracticaltrainingopportunitiesforengineeringgraduatestoenablethemcompletetheirtrainingandattainprofessionalstatus.Toreachthetarget,studentsmusthavebasicknowledgeandprofoundexpertiseonmaterialsscience&engineering,havethetechnicalabilitytothepreparation,processingandcharacterizationofadvancedmaterials,havetheabilitytocarryoutresearchworksindependentlyandcanobtaincreativeachievementsinscienceorexpertise.TobeginthePhDprograminmaterialsscienceandengineeringinourschool,astudentmust:
1.HavetheacademicqualificationadmittedbyJiangsuUniversity.
2.HaveobtainedaMasterdegreeinmaterialsscienceorinarelateddisciplinebeforeenrollingasacandidateforPhDdegree.
Ⅱ.GOAL
Requirements:
1.Witharigorousandrealisticscientificattitudeandstyleofwork,astrongprofessionalethicsandanall-rounddevelopmentofmoral,intellectualandphysicallevel;
2.Tohaveamagnificentfoundationintheory,systematicexpertisein-depth;
3.TohaveR&Dandinnovationabilitywhenengagedintheoreticalresearchandhigh-techprojectindependently,toundertakeandcompleteresearchsubjectsinthisfieldonone’sown,capableofperformingscientificresearch,teachingandtechnologymanagementofscientificprojects.
Ⅲ.OBJECTIVES
ThePh.D.trainingisbasedonTutorialSystem.ThetrainingprocessisajointeffortofSupervisorandPh.D.TutorCommittee.GraduationtimeisdecidedbyPh.D.TutorCommittee.Generalstudyingperiodis3to5years.Ph.D.candidatesshouldfinishprescribedresearchworkanddissertation.
Ⅳ.RESEARCHFIELDS
ThePh.D.DegreePrograminMaterialsScience&Engineeringfocuseson:
1.DesignandPreparationofAdvancedMetalStructuralMaterials
2.PreparationandProcessingControlofAdvancedMaterials
3.MultifunctionalDesignandOptimizationofInorganic Nonmetallic Materials
4.BiomaterialsandEnergyMaterials
5.BiomimeticPolymerScience
Ⅴ.DEGREEREQUIREMENTS
ThegraduatestudentsforMaterialsScienceandEngineeringmajorshouldfinishtherequiredcoursecreditsthatmustbeatleastatotalof15credits,andthecreditsfordegreecoursesshouldbemorethan9.Thecompletionofthesecoursesisusuallywithin1to2years,whiletheadditional2to3yearsisusedtocompletethedissertationresearchandthesisoraldefense.Moreover,everystudentisalsorequiredtocommitseveralpresentations/lecturesthatarecloselyrelevanttohis/herresearchproject,attendacademicconferences/workshopsforatleast15times,whichwillbecountedfor2creditsofthisseminarcourse.Inaddition,therequiredcoursecreditscanbeaddedbeyondthetotalrequiredcoursecreditsifthatisnecessaryintermsofyourknowledgebackgroundandtheresearchprojectinwhichyouwillinvolve.
Ⅵ.CURRICULUM
CourseCategory
CourseName
Credit
Term
CourseFrom
theSchool
Remark
DegreeCourses
CompulsorySubjectsforallStudents
OverviewofChina
2
1
OverseasEducationCollege
Compulsory
Chinese
3
1,2
OverseasEducationCollege
FundamentalTheories
MathematicModel
2
1
SchoolofScience
Atleastoneofthem
Chaostheory
2
1
SchoolofScience
Advancedstructuralmaterialchemistry
2
2
SchoolofMaterialsScienceandEngineering(SchoolofMSE)
ProfessionalFoundationorSpecializedCourses
AdvancedX-raydiffractionstudies
2
2
SchoolofMSE
Atleastoneofthem
MaterialsChemistry
2
2
SchoolofMSE
SpecializedElectiveCourses
IntroductiontoEnergyMaterials
2
2
SchoolofMSE
Atleasttwoofthem
FunctionalMaterials
2
2
SchoolofMSE
ScienceofCompositeMaterials
2
2
SchoolofMSE
NanomaterialsandNanotechnology
2
2
SchoolofMSE
Chemicalsynthesisofinorganicmaterials
2
2
SchoolofMSE
ThecharacterizationinBionanomaterials
2
2
SchoolofMSE
NewPolymermaterials
2
2
SchoolofMSE
PublicElective
Courses
ResearchandInformationLiteracyⅠ
LiteratureRetrieval&Utilization
2
1
GraduateSchool
OverseasEducationCollege
Atleastoneofthem
PaperWriting
1
ResearchandInformationLiteracyⅡ
PatentApplication
1
2
ScientificFrontiers&Symposiums
1
1,2
SchoolofMSE
Compulsory
VII.COURSECONTENT
Coursename:
Advancedstructuralmaterialchemistry
Overallgoal:
Theoverallgoalofthiscourse"advancedstructuralmaterialchemistry"istoendowPhD-levelstudentswithknowledgeinmaterials'structuralchemistry,servingtheirfutureresearchinthedevelopmentofnovelmaterials.
Specifiedobjectives:
Theoverallgoalcanbeaccomplishedthroughthree-phase'learning,thatis,thebasicknowledgegainedinthefirstphaseinmaterials'structure(suchasmetallic,nonmetallicandorganicpolymermaterials),followedbythehotissuesofmaterials'structuresdiscussedinthesecondphase(includingmolecularself-assembly,phase-transitionofsmartmaterials,andshape-memorymaterialsetc.),andfinallythediscussioninthematerialsstructureperformanceandhowitcanbeimprovedusingmodification.
Contentcovered:
"Advancedstructuralmaterialchemistry"isadisciplineatopmaterialsscience,addressingtherelationshipbetweenmaterials'microstructuresandmacroscopicperformance.Researcherscanachieveopportunitiestoimproveandadjustmaterials'performancebyresortingforthebasicknowledgegainedinmaterials'structureandthehotissuescapturedinmaterials'structures.Themajorcontentinvolvedinthiscoursecoversbasicknowledgeinmaterialsthemselvesandtheirstructures,includingmetallic,nonmetallicandorganicpolymermaterials.Thecoursealsocoverscurrenthotissuesinthematerials,suchasmolecularself-assembly,phase-transitionofsmartmaterials,andshape-memorymaterials.Theobjectiveofthiscourseistoserveininnovativeresearchesandparticularlyinthedevelopmentofnovelmaterials.
Evaluation:
Close-bookexamination.
CourseName:
AdvancedX-raydiffractionstudies
Goal
XRDisatoolfortheinvestigationofthecrystalstructuresofmaterials.Itisanextremelyimportantanalyticaltoolforresearchersinmaterialsrelateddisciplines.ThisclassisintendedtoprovidethestudentswiththeknowledgeofX-RayDiffraction(XRD)anditsapplications.
EssentialObjectives
1.Thiscoursewillprovidefundamentalsandapplicationsofpowderx-raydiffraction,whichisanextremelyimportantanalyticaltoolforresearch.ThiscourseisusefulforthestudentsfromMaterialsScienceandChemistry.
2.Asaresultofattendingthiscourse,youwill
1)Learnthefundamentalsofcrystallographyanddiffraction
2)BeabletouseRietveldrefinementofpowderX-raydiffractiondatabyFullprofprogram
3)UnderstandthepropertiesofSynchrotronradiationanduseforstructuralinvestigationofcomplexnovelmaterialsorfastdataacquisitionforinsituinvestigationofphasetransitionorchemicalreactionsunderavarietyofphysicalconditions.
4)Gainhands-onexperiencewithtechniquesandprogrammesfordataanalysis.
ContentCoverage
Thiscoursecoversthefundamentalsofcrystallographyanddiffraction.24crystalstructuretypesofimportancetovariousbranchesofmaterialsscienceandengineeringwillbeintroduced.TheintenseX-rayradiationfromasynchrotroncanprovidehighqualitypowderX-raydiffractiondatawhichwillalsointroduced.Thetechniquecanprovidehighresolutiondataforstructuralinvestigationofcomplexnovelmaterialsorfastdataacquisitionforinsituinvestigationofphasetransitionorchemicalreactionsunderavarietyofphysicalconditions.MethodsfordataanalysisofRietveldrefinementwillbediscussedusingFullprofprogram.Theteachingwillbeanumberoflecturesandworkshopswheretheparticipantswillgainhands-onexperiencewithtechniquesandprogrammesfordataanalysis..
Evaluation:
EssayReport
CourseName:
MaterialsChemistry
Goal
Theemphasisinthiscourseisonmaterialsstructure,fromatomicleveltomacro-scaleanditsrelationshiptoproperties,andfabricationmethods,todevelopadvancedmaterialswithgoodperformance.
EssentialObjectives
Thecourserelatestothechemistriesofmaterialsonsynthesis,process,application,etc.Bythestudyingofthecourse,thestudentsshouldwellunderstandtherelationshipofthestructuresandpropertiesofmaterials,getsolidmasteryonthechemicalsynthesismethodandpreparationtechnologyofmaterials,havebasicknowledgeonnovelmetallicmaterials,inorganicmaterials,nano-materials,polymermaterialsandhighperformancecompositeandtheirapplications.
ContentCoverage
ThecoursebeginsinPartIwithanoverviewoftheelementarychemistrythatunderliesmuchofmodernmaterialsscience.Chapter1isageneralintroductiontothesubject,Chapter2dealswithdescriptiveideasofchemicalbonding,andChapter3summarizesthebackgroundsynthesisandreactionchemistrythatplayacrucialpartinmanyaspectsofmaterialsscience.PartIIfocusesonthecoreofmaterialschemistry-ondifferentclassesofmaterials,withfivechaptersdealingwithpolymersglasses,oxideandnon-oxideceramics,metals,alloys,andcomposites.Theemphasisinthissectionisonmaterialsdiversity,chemicalsynthesis,solid-statestructureanditsrelationshiptoproperties,andfabricationmethods.PartIIIbuildsontheforegoingchaptersandcontinueswithanemphasisonmaterialsthatareimportantinelectronics,energy-relatedapplications,membranes,o