传感材料与传感技术丛书·化学传感器:仿真与建模(第5卷·电化学传感器 上册 影印版)

传感材料与传感技术丛书·化学传感器:仿真与建模(第5卷·电化学传感器 上册 影印版)
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作者: [摩尔多瓦] (Korotcenkov,G.)
2015-01
版次: 1
ISBN: 9787560348988
定价: 90.00
装帧: 平装
开本: 16开
纸张: 胶版纸
页数: 408页
正文语种: 英语
分类: 工程技术
4人买过
  •   Thisseries,ChemicalSensors:SimulationandModeling,istheperfectcomplementtoMomentumPress'ssix-volumereferenceseries,ChemicalSensors:FundamentalsofSensingMaterialsandChemicalSensors:ComprehensiveSensorTechnologies,whichpresentdetailedinformationaboutmaterials,technologies,fabrication,andapplicationsofvariousdevicesforchemicalsensing.Chenucal.sensorsareintegraltotheautomationofmyriadindustrialprocessesandevery-daymonitoringofsuchactivitiesaspublicsafety,engineperformance,medicaltherapeutics,andmanymore.
      Despitethelargenumberofchemicalsensorsalreadyonthemarket,selectionanddesignofasuitablesensorforanewapplicationisadifficulttaskforthedesignengineer.Carefulselectionofthesensingmaterial,sensorplatform,technologyofsynthesisordepositionofsensitivematerials,appropriatecoatingsandmembranes,andthesamplingsystemisveryimportant,becausethosedecisionscandeterminethespecificity,sensitivity,responsetime,andstabilityofthefinaldevice.Selectivefunctionalizationofthesensorisalsocriticaltoachievingtherequiredoperatingparameters.Therefore,indesigningachemicalsensor,developershavetoanswertheenormousquestionsrelatedtopropertiesofsensingmaterialsandtheirfunctioninginvariousenvironments.Thisfour-volumecom-prehensivereferenceworkanalyzesapproachesusedforcomputersimulationandmodelinginvariousfieldsofchemicalsensinganddiscussesvariousphenomenaimportantforchemical.sensing,suchassurfacediffusion,adsorption,surfacereactions,sintering,conductivity,masstransport,interphaseinteractions,etc.Inthesevolumesitisshownthattheoreticalmodelingandsimulationoftheprocesses,beingabasicforchemicalsensoroperation,canprovideconsiderableassistanceinchoosingbothoptimalmaterialsandoptimalconfigurationsofsensingelementsforuseinchemicalsensors.Thetheoreticalsimulationandmodelingofsensingmaterialbehaviorduringinteractionswithgasesandliquidsurroundingscanpromoteunderstandingofthenatureofeffectsresponsibleforhigheffectivenessofchemicalsensorsoperationaswell.Nevertheless,wehavetounderstandthatonlyveryafewaspectsofchemistrycanbecomputedexactly.   GhenadiiKorotcenkov,receivedhisPh.D.inPhysicsandTechnologyofSemiconductorMaterialsandDevicesin1976,andhisHabilitateDegree(Dr.Sci.)inPhysicsandMathematicsofSemiconductorsandDielectricsin1990.ForalongtimehewasaleaderofthescientificGasSensorGroupandmanagerofvariousnationalandinternationalscientificandengineeringprojectscarriedoutintheLaboratoryofMicro-andOptoelectronics,TechnicalUniversityofMoldova.Currently,Dr.KorotcenkovisaresearchprofessorattheGwangjuInstituteofScienceandTechnology,RepublicofKorea.
      SpecialistsfromtheformerSovietUnionknowDr.Korotcenkov'sresearchresultsinthefieldofstudyofSchottkybarriers,MOSstructures,nativeoxides,andphotoreceiversbasedonGroupIIIH-Vcompoundsverywell.Hiscurrentresearchinterestsincludematerialsscienceandsurfacescience,focusedonnanostructuredmetaloxidesandsolid-stategassensordesign.Dr.Korotcenkovistheauthororeditorof11booksandspecialissues,11invitedreviewpapers,17bookchapters,andmorethan190peer-reviewedarticles.Heholds18patents,andhehaspresentedmorethan200reportsatnationalandinternationalconferences.
      Dr.Korotcenkov'sresearchactivitieshavebeenhonoredbyanAwardoftheSupremeCouncilofScienceandAdvancedTechnologyoftheRepublicofMoldova(2004),ThePrizeofthePresidentsoftheUkrainian,Belarus,andMoldovanAcademiesofSciences(2003),SeniorResearchExcellenceAwardsfromtheTechnicalUniversityofMoldova(2001,2003,2005),afellowshipfromtheInternationalResearchExchangeBoard(1998),andtheNationalYouthPrizeoftheRepublicofMoldova(1980),amongothers. PREFACE
    ABOUTTHEEDITOR
    CONTRIBUTORS
    PART1:SOLID-STATEELECTROCHEMICALSENSORS
    1SURFACEANDINTERFACEDEFECTSINIONICCRYSTALS
    1Introduction
    1.1SolidElectrolytesandElectrodesforElectrochemicalSensors:ABriefOverview
    1.2SurfaceandInterfacePropertiesofIonicSolids
    2CalculationoftheSurfacePotentialandSurfaceDefectsUsingtheSternModel
    2.1DescriptionoftheModel
    2.2PureCrystalsoftheNaClType
    2.3SurfacePotentialinNaClCrystalsContainingDivalentCations
    2.4ComparisonwithExperimentalData
    2.5SurfacePotentialandConcentrationofPointDefectsonGrainBoundariesofSuperionicOxideCeramics
    2.6SurfaceDisorderinTermsofEnergyDiagrams
    2.7DefectsonInterfaces
    3SizeEffectsinNanocompositeSolidElectrolytes
    4ApplicationsinSensors
    5Conclusions
    References

    2SOLID-STATEELECTROCHEMICALGASSENSORS
    1Introduction
    2ElectrodePotentials
    3TypesofElectrochemicalSensors
    3.1EquilibriumPotentiometricSensors
    3.2MixedPotentiometricSensors
    3.3AmperometricSensors
    4Applications
    4.10xygenSensors
    4.2CarbonDioxideSensors
    4.3NOxSensors
    4.4SOxSensors
    4.5HydrogenSensors
    Acknowledgments
    References

    PART2:ELECTROCHEMICALSENSORSFORLIQUIDENVIRONMENTS
    3MODELINGANDSIMULATIONOFIONICTRANSPORTPROCESSESTHROUGHIDEALION-EXCHANGEMEMBRANESYSTEMS
    1Introduction
    2TheoreticalDescription
    2.1IonicTransportinIdealIon-ExchangeMembraneSystems
    2.2ElectricCurrentPerturbations
    2.3AnalyticalSolutions
    3TheNetworkModel
    4NetworkSimulation
    4.1TransientResponse
    4.2ElectrochemicalImpedance
    5Conclusion
    Nomenclature

    4MECHANISMOFPOTENTIALDEVELOPMENTFORPOTENTIOMETRICSENSORSBASEDONMODELINGOFINTERACTIONBETWEENELECTROCHEMICALLYACTIVECOMPOUNDSFROMTHEMEMBRANEANDANALYTE
    5COMPUTERMODELINGOFTHEPOTENTIOMETRICRESPONSEOFION-SELECTIVEELECTRODESWITHIONOPHORE-BASEDMEMBRANES
    6MODELSOFRESPONSEINMIXED-IONSOLUTIONSFORION-SENSITIVEFIELD-EFFECTTRANSISTORS
    INDEX
  • 内容简介:
      Thisseries,ChemicalSensors:SimulationandModeling,istheperfectcomplementtoMomentumPress'ssix-volumereferenceseries,ChemicalSensors:FundamentalsofSensingMaterialsandChemicalSensors:ComprehensiveSensorTechnologies,whichpresentdetailedinformationaboutmaterials,technologies,fabrication,andapplicationsofvariousdevicesforchemicalsensing.Chenucal.sensorsareintegraltotheautomationofmyriadindustrialprocessesandevery-daymonitoringofsuchactivitiesaspublicsafety,engineperformance,medicaltherapeutics,andmanymore.
      Despitethelargenumberofchemicalsensorsalreadyonthemarket,selectionanddesignofasuitablesensorforanewapplicationisadifficulttaskforthedesignengineer.Carefulselectionofthesensingmaterial,sensorplatform,technologyofsynthesisordepositionofsensitivematerials,appropriatecoatingsandmembranes,andthesamplingsystemisveryimportant,becausethosedecisionscandeterminethespecificity,sensitivity,responsetime,andstabilityofthefinaldevice.Selectivefunctionalizationofthesensorisalsocriticaltoachievingtherequiredoperatingparameters.Therefore,indesigningachemicalsensor,developershavetoanswertheenormousquestionsrelatedtopropertiesofsensingmaterialsandtheirfunctioninginvariousenvironments.Thisfour-volumecom-prehensivereferenceworkanalyzesapproachesusedforcomputersimulationandmodelinginvariousfieldsofchemicalsensinganddiscussesvariousphenomenaimportantforchemical.sensing,suchassurfacediffusion,adsorption,surfacereactions,sintering,conductivity,masstransport,interphaseinteractions,etc.Inthesevolumesitisshownthattheoreticalmodelingandsimulationoftheprocesses,beingabasicforchemicalsensoroperation,canprovideconsiderableassistanceinchoosingbothoptimalmaterialsandoptimalconfigurationsofsensingelementsforuseinchemicalsensors.Thetheoreticalsimulationandmodelingofsensingmaterialbehaviorduringinteractionswithgasesandliquidsurroundingscanpromoteunderstandingofthenatureofeffectsresponsibleforhigheffectivenessofchemicalsensorsoperationaswell.Nevertheless,wehavetounderstandthatonlyveryafewaspectsofchemistrycanbecomputedexactly.
  • 作者简介:
      GhenadiiKorotcenkov,receivedhisPh.D.inPhysicsandTechnologyofSemiconductorMaterialsandDevicesin1976,andhisHabilitateDegree(Dr.Sci.)inPhysicsandMathematicsofSemiconductorsandDielectricsin1990.ForalongtimehewasaleaderofthescientificGasSensorGroupandmanagerofvariousnationalandinternationalscientificandengineeringprojectscarriedoutintheLaboratoryofMicro-andOptoelectronics,TechnicalUniversityofMoldova.Currently,Dr.KorotcenkovisaresearchprofessorattheGwangjuInstituteofScienceandTechnology,RepublicofKorea.
      SpecialistsfromtheformerSovietUnionknowDr.Korotcenkov'sresearchresultsinthefieldofstudyofSchottkybarriers,MOSstructures,nativeoxides,andphotoreceiversbasedonGroupIIIH-Vcompoundsverywell.Hiscurrentresearchinterestsincludematerialsscienceandsurfacescience,focusedonnanostructuredmetaloxidesandsolid-stategassensordesign.Dr.Korotcenkovistheauthororeditorof11booksandspecialissues,11invitedreviewpapers,17bookchapters,andmorethan190peer-reviewedarticles.Heholds18patents,andhehaspresentedmorethan200reportsatnationalandinternationalconferences.
      Dr.Korotcenkov'sresearchactivitieshavebeenhonoredbyanAwardoftheSupremeCouncilofScienceandAdvancedTechnologyoftheRepublicofMoldova(2004),ThePrizeofthePresidentsoftheUkrainian,Belarus,andMoldovanAcademiesofSciences(2003),SeniorResearchExcellenceAwardsfromtheTechnicalUniversityofMoldova(2001,2003,2005),afellowshipfromtheInternationalResearchExchangeBoard(1998),andtheNationalYouthPrizeoftheRepublicofMoldova(1980),amongothers.
  • 目录:
    PREFACE
    ABOUTTHEEDITOR
    CONTRIBUTORS
    PART1:SOLID-STATEELECTROCHEMICALSENSORS
    1SURFACEANDINTERFACEDEFECTSINIONICCRYSTALS
    1Introduction
    1.1SolidElectrolytesandElectrodesforElectrochemicalSensors:ABriefOverview
    1.2SurfaceandInterfacePropertiesofIonicSolids
    2CalculationoftheSurfacePotentialandSurfaceDefectsUsingtheSternModel
    2.1DescriptionoftheModel
    2.2PureCrystalsoftheNaClType
    2.3SurfacePotentialinNaClCrystalsContainingDivalentCations
    2.4ComparisonwithExperimentalData
    2.5SurfacePotentialandConcentrationofPointDefectsonGrainBoundariesofSuperionicOxideCeramics
    2.6SurfaceDisorderinTermsofEnergyDiagrams
    2.7DefectsonInterfaces
    3SizeEffectsinNanocompositeSolidElectrolytes
    4ApplicationsinSensors
    5Conclusions
    References

    2SOLID-STATEELECTROCHEMICALGASSENSORS
    1Introduction
    2ElectrodePotentials
    3TypesofElectrochemicalSensors
    3.1EquilibriumPotentiometricSensors
    3.2MixedPotentiometricSensors
    3.3AmperometricSensors
    4Applications
    4.10xygenSensors
    4.2CarbonDioxideSensors
    4.3NOxSensors
    4.4SOxSensors
    4.5HydrogenSensors
    Acknowledgments
    References

    PART2:ELECTROCHEMICALSENSORSFORLIQUIDENVIRONMENTS
    3MODELINGANDSIMULATIONOFIONICTRANSPORTPROCESSESTHROUGHIDEALION-EXCHANGEMEMBRANESYSTEMS
    1Introduction
    2TheoreticalDescription
    2.1IonicTransportinIdealIon-ExchangeMembraneSystems
    2.2ElectricCurrentPerturbations
    2.3AnalyticalSolutions
    3TheNetworkModel
    4NetworkSimulation
    4.1TransientResponse
    4.2ElectrochemicalImpedance
    5Conclusion
    Nomenclature

    4MECHANISMOFPOTENTIALDEVELOPMENTFORPOTENTIOMETRICSENSORSBASEDONMODELINGOFINTERACTIONBETWEENELECTROCHEMICALLYACTIVECOMPOUNDSFROMTHEMEMBRANEANDANALYTE
    5COMPUTERMODELINGOFTHEPOTENTIOMETRICRESPONSEOFION-SELECTIVEELECTRODESWITHIONOPHORE-BASEDMEMBRANES
    6MODELSOFRESPONSEINMIXED-IONSOLUTIONSFORION-SENSITIVEFIELD-EFFECTTRANSISTORS
    INDEX
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