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ID:36596615
大小:9.69 MB
页数:79页
时间:2019-05-12
《流延法制备氧化钨基功能材料电学性能的研究》由会员上传分享,免费在线阅读,更多相关内容在学术论文-天天文库。
1、西南交通大学硕士学位论文流延法制备氧化钨基功能材料电学性能的研究姓名:张英申请学位级别:硕士专业:凝聚态物理指导教师:王豫20080501AbstractAsakindoftransitionmetaloxide,becauseofitsmultiphaseandferroelectricity,W03(tungstentrioxide)havemanyspecialproperties·AsanimportantsemiconductormaterialW03isextensivelyusedinfuelcel
2、ls,electrochromicdevice,photocatalyticdegradation,toxicgassensorandothers-Inrecentyears,someauthorsreportedstudiesonnonohmicbehaviorofsinteredW03ceramicsindicatingW03-basedceramicsarepotentialvaristormaterials·However,theelectricalpropertiesofsinteredW03ceram
3、icsareinstable,whichISanobviousobstacleforpracticalapplicationofW03asavaristormaterial.InthisWOrk,singlecomponenandfunctionallygradientmaterials(FGM)ispreparedbythemethodoftapecasting,anditselectricalproperties(current-voltagecharacteristic,resistivity,impeda
4、nce)、internalrelationswerediscussed.Theprincipalresearchcontentsinclude:Thepreparationoftapecastingslurryisexplored,throughtesttodecidetheoptimizedtechnologycondition.Thefreecrackssampleswerefabricated.Themicrostructuresofsampleswereobservedbyusingascanningel
5、ectronmicroscope.Basedonthestudyofthecurrent·voltagecharacteristics,wefindoutthatboththesinglecomponenandfunctionallygradientmaterialsofC0203dopedW01behavednegativedifferentialresistance(NDR)characteristic.However,theNDRappearsinnonlinearregionandthepropertyi
6、scorrelatedwiththeelectrichistoryofthesamples.Forfunctionallygradientmaterials,Nodelaminationwasobservedinanycaseafterhightemperaturesintering.Moreover;wealsoObseI、,edthattheelectricpropertyofFGMexhibitedanisotropy.Thepropertydif.ferentfromtraditionalmaterial
7、soriginatesfromheterogeneityofcomposition,anditisnotdeterminedbysomelayerofthesample.Wo.97.xCoo.03A1x03polycrystallineceramicbulkswerefabricatedbyconventionalceramictechnique.WefoundthattheproperamountsofA1203canreducetheresistivityofceramicsandimprovetheelec
8、tricalstabilityofceramics.Inaddition,thecontentofA1203canadjusttheresistivityandresistance.temperaturepropertiesofceramicsefficiently.ThisworksystematicallyinvestigatedtheFe203dopedW03sin
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