一维纳米结构材料:概念、应用和展望(英文版)

一维纳米结构材料:概念、应用和展望(英文版)
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作者: ,
2009-07
版次: 1
ISBN: 9787312022012
定价: 58.00
装帧: 平装
开本: 16开
  • 纳米材料是20世纪80年代中期一个迅速发展的材料科学领域,受到人们广泛的关注。《一维纳米结构材料概念、应用和展望(英文版)》选择性的汇集了国内外中国科技大学校友在一维纳米材料的最新科技研究成果。书中介绍了一维纳米材料包括纳米线、纳米管和纳米带等当今研究的趋势、相关技术与未来发展方向,是化学、物理和材料等学科的基础理论研究与应用技术的前沿集成反映。
    《一维纳米结构材料概念、应用和展望(英文版)》适合于高等学校、科研院所以及相关企业从事纳米材料研发的科研人员和管理工作者,同时也可作为相关专业的师生和爱好者学习参考用书。 PrefaceofAlumnisSerials
    Preface
    Chapter1LipidNanotubesandPeptideNanotubes:FormationandApplicationsforScaffoldingNanomaterials
    Abstract
    1.1Introduction
    1.2FormationofLNTs
    1.3FormationofPNTs
    1.4Templatingnanostructures
    1.4.1LNT-templatingnanostructures
    1.4.2PNTstemplatingnanostructures
    1.5Conclusion
    Acknowledgments
    References
    Chapter2IntroductionofNanodevicesBasedonZnONanowires/Nanobelts
    Abstract
    2.1Introduction
    2.2TransportpropertiesofZnOnanowires/nanobelts
    2.2.1FieldeffecttransistorbasedonZnONWs
    2.2.2SchottkydiodesbasedonZnONBs/NWs
    2.3PiezoelectronicsbasedonZnONWs/NBs
    2.3.1PiezoelectricityandstructureofZnO
    2.3.2Piezoelectricnanogenerators
    2.4OptoelectronicsbasedonZnONWs
    2.4.1UVdetector
    2.4.2Nanowirebasednano]asers
    2.4.3NanowirearrayLED
    2.5ChemicalandbiologicalsensorsbasedonZnOnanowires
    2.6Dopingmodification,fieldemissionandmechanicalproperties
    2.6.1MetaldopingofZnO
    2.6.2FieldemissionpropertiesofZnOnanowirearrays
    2.6.3NanobalancebasedonZnOnanowire
    2.7Summary
    References
    Chapter3ElasticPropertiesofOne-dimensionalMetalNanoparticlesStudiedbyTime-resolvedSpectroscopy
    3.1Introduction
    3.1.1Metalnanoparticles
    3.1.2Time-resolvedspectroscopy
    3.2Theory
    3.3Experimentalapparatusandtechniques
    3.3.1Synthesisofaunanorods
    3.3.2Transientabsorptionapparatus
    3.4Experimentalresults
    3.4.1Characterizationofaunanorods
    3.4.2Transientabsorptionexperiment
    3.4.3Elasticpropertiesofgoldnanorods
    3.4.4Discussionoftheelasticmoduliofmetalnanorods
    3.5Summaryandconclusion
    Acknowledgment
    References
    Chapter4Microwave-assistedRapidPreparationofOne-dimensionalNanostructures
    Abstract
    4.1Microwave-assistedionicliquid(MAIL)method
    4.1.1Preparationofelemental1-Dnanostructures
    4.1.2Preparationof1-Dnanostructuresofmetaloxides
    4.1.3Preparationofmetalchalcogenide1-Dnanostructures
    4.1.4Preparationofnanostructureswithothermorphologies
    4.2Microwave-assistedpolythiolreduction(MPTR)method
    4.3Microwave-assistedpolyolmethod
    4.4Microwave-assistedpolyol-watermethod
    4.5Microwave-assistedaqueoussolutionmethod
    References
    Chapter5SomeRecentDevelopmentsintheSolution-PhaseSynthesisofOne-DimensionalInorganicNanostructures
    Abstract
    5.1Introduction
    5.2Coordinationcompounds,structuralcharacteristicstodirectanisotropicgrowth
    5.2.1Simplecomplexes
    5.2.2Linearcoordinationclustercompounds
    5.2.3Metal-polymercoordinationchains
    5.2.43-Dcoordinationpolymers
    5.3Surfactant-basedsystems:microreactorstoconfineanisotropicgrowth
    5.3.1Rod-likemicelles
    5.3.2Inorganic-surfactantintercalatedmesostructures
    5.4Etchingandtwinning:twocontributionstoinduceanisotropicgrowth
    5.4.1Localizedoxidativeetchingonsingle-crystalseeds
    5.4.2Twindefectstobreakcubicsymmetry
    5.5Concludingremarks
    Acknowledgements
    References
    Chapter6One-DimensionalNanoscaleHeterostruetures
    Abstract
    6.1Introduction
    6.2Syntheticroutesfor1-Dnanoscaleheterostructures
    6.2.1Vaporphasemethods
    6.2.2Solutionmethods
    6.2.3Lithography
    6.2.4Electrospinning
    6.2.5Templatedirectedmethods
    6.3Typical1-Dnanoscaleheterostructures
    6.3.1Co-axialnanowires
    6.3.2Segmentednanowires
    6.4Oonclusionandremarks
    References
    Chapter7BidMeetsNano:DNA-BasedSynthesisandAssemblyTowardOne-DimensionalNanostructures
    7.1Introduction
    7.2DNAtemplatedelectrolessdepositionformetallicnanowirefabrications
    7.3DNAdirectedassemblyofnanoparticlelineararrays
    7.3.1DNAencodedone-dimensionalarrayofgoldnanoparticles
    7.3.2RCAfacilitatedassemblyoflong,sturdyandrigidDAEEarraysuitableforproteinorganization
    7.4Onedimensionalself-assemblyonDNA-wrappedcarbonnanotub
    7.5DNAnanotubes,constructionsandfunctionalizations
    7.6OtherexamplesofDNA-basedonedimensionalnanostructures
    7.7Outlook
    Acknowledgements
    References
    Chapter8SoftChemistryRoutestoSynthesisofOne-DimensionalNanostructuresandTheirProperties
    8.1Introduction
    8.2Rareearthcompound1-Dnanostructures
    8.31-Dnanostructurestemplatedbyorganicadditives
    8.4Biomimeticsynthesisof1-Dnanostructures
    8.5Otherfunctional1-Dnanostructuredmaterials
    8.6Theformationmechanismof1-Dnanostructures
    8.7Summaryandoutlook
    Acknowledgement
    References
  • 内容简介:
    纳米材料是20世纪80年代中期一个迅速发展的材料科学领域,受到人们广泛的关注。《一维纳米结构材料概念、应用和展望(英文版)》选择性的汇集了国内外中国科技大学校友在一维纳米材料的最新科技研究成果。书中介绍了一维纳米材料包括纳米线、纳米管和纳米带等当今研究的趋势、相关技术与未来发展方向,是化学、物理和材料等学科的基础理论研究与应用技术的前沿集成反映。
    《一维纳米结构材料概念、应用和展望(英文版)》适合于高等学校、科研院所以及相关企业从事纳米材料研发的科研人员和管理工作者,同时也可作为相关专业的师生和爱好者学习参考用书。
  • 目录:
    PrefaceofAlumnisSerials
    Preface
    Chapter1LipidNanotubesandPeptideNanotubes:FormationandApplicationsforScaffoldingNanomaterials
    Abstract
    1.1Introduction
    1.2FormationofLNTs
    1.3FormationofPNTs
    1.4Templatingnanostructures
    1.4.1LNT-templatingnanostructures
    1.4.2PNTstemplatingnanostructures
    1.5Conclusion
    Acknowledgments
    References
    Chapter2IntroductionofNanodevicesBasedonZnONanowires/Nanobelts
    Abstract
    2.1Introduction
    2.2TransportpropertiesofZnOnanowires/nanobelts
    2.2.1FieldeffecttransistorbasedonZnONWs
    2.2.2SchottkydiodesbasedonZnONBs/NWs
    2.3PiezoelectronicsbasedonZnONWs/NBs
    2.3.1PiezoelectricityandstructureofZnO
    2.3.2Piezoelectricnanogenerators
    2.4OptoelectronicsbasedonZnONWs
    2.4.1UVdetector
    2.4.2Nanowirebasednano]asers
    2.4.3NanowirearrayLED
    2.5ChemicalandbiologicalsensorsbasedonZnOnanowires
    2.6Dopingmodification,fieldemissionandmechanicalproperties
    2.6.1MetaldopingofZnO
    2.6.2FieldemissionpropertiesofZnOnanowirearrays
    2.6.3NanobalancebasedonZnOnanowire
    2.7Summary
    References
    Chapter3ElasticPropertiesofOne-dimensionalMetalNanoparticlesStudiedbyTime-resolvedSpectroscopy
    3.1Introduction
    3.1.1Metalnanoparticles
    3.1.2Time-resolvedspectroscopy
    3.2Theory
    3.3Experimentalapparatusandtechniques
    3.3.1Synthesisofaunanorods
    3.3.2Transientabsorptionapparatus
    3.4Experimentalresults
    3.4.1Characterizationofaunanorods
    3.4.2Transientabsorptionexperiment
    3.4.3Elasticpropertiesofgoldnanorods
    3.4.4Discussionoftheelasticmoduliofmetalnanorods
    3.5Summaryandconclusion
    Acknowledgment
    References
    Chapter4Microwave-assistedRapidPreparationofOne-dimensionalNanostructures
    Abstract
    4.1Microwave-assistedionicliquid(MAIL)method
    4.1.1Preparationofelemental1-Dnanostructures
    4.1.2Preparationof1-Dnanostructuresofmetaloxides
    4.1.3Preparationofmetalchalcogenide1-Dnanostructures
    4.1.4Preparationofnanostructureswithothermorphologies
    4.2Microwave-assistedpolythiolreduction(MPTR)method
    4.3Microwave-assistedpolyolmethod
    4.4Microwave-assistedpolyol-watermethod
    4.5Microwave-assistedaqueoussolutionmethod
    References
    Chapter5SomeRecentDevelopmentsintheSolution-PhaseSynthesisofOne-DimensionalInorganicNanostructures
    Abstract
    5.1Introduction
    5.2Coordinationcompounds,structuralcharacteristicstodirectanisotropicgrowth
    5.2.1Simplecomplexes
    5.2.2Linearcoordinationclustercompounds
    5.2.3Metal-polymercoordinationchains
    5.2.43-Dcoordinationpolymers
    5.3Surfactant-basedsystems:microreactorstoconfineanisotropicgrowth
    5.3.1Rod-likemicelles
    5.3.2Inorganic-surfactantintercalatedmesostructures
    5.4Etchingandtwinning:twocontributionstoinduceanisotropicgrowth
    5.4.1Localizedoxidativeetchingonsingle-crystalseeds
    5.4.2Twindefectstobreakcubicsymmetry
    5.5Concludingremarks
    Acknowledgements
    References
    Chapter6One-DimensionalNanoscaleHeterostruetures
    Abstract
    6.1Introduction
    6.2Syntheticroutesfor1-Dnanoscaleheterostructures
    6.2.1Vaporphasemethods
    6.2.2Solutionmethods
    6.2.3Lithography
    6.2.4Electrospinning
    6.2.5Templatedirectedmethods
    6.3Typical1-Dnanoscaleheterostructures
    6.3.1Co-axialnanowires
    6.3.2Segmentednanowires
    6.4Oonclusionandremarks
    References
    Chapter7BidMeetsNano:DNA-BasedSynthesisandAssemblyTowardOne-DimensionalNanostructures
    7.1Introduction
    7.2DNAtemplatedelectrolessdepositionformetallicnanowirefabrications
    7.3DNAdirectedassemblyofnanoparticlelineararrays
    7.3.1DNAencodedone-dimensionalarrayofgoldnanoparticles
    7.3.2RCAfacilitatedassemblyoflong,sturdyandrigidDAEEarraysuitableforproteinorganization
    7.4Onedimensionalself-assemblyonDNA-wrappedcarbonnanotub
    7.5DNAnanotubes,constructionsandfunctionalizations
    7.6OtherexamplesofDNA-basedonedimensionalnanostructures
    7.7Outlook
    Acknowledgements
    References
    Chapter8SoftChemistryRoutestoSynthesisofOne-DimensionalNanostructuresandTheirProperties
    8.1Introduction
    8.2Rareearthcompound1-Dnanostructures
    8.31-Dnanostructurestemplatedbyorganicadditives
    8.4Biomimeticsynthesisof1-Dnanostructures
    8.5Otherfunctional1-Dnanostructuredmaterials
    8.6Theformationmechanismof1-Dnanostructures
    8.7Summaryandoutlook
    Acknowledgement
    References
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