• Morphology Genetic Materials Templated from Nature Species
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Morphology Genetic Materials Templated from Nature Species

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作者张荻 编

出版社浙江大学出版社

出版时间2011-11

版次1

装帧精装

货号A21

上书时间2024-12-12

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图书标准信息
  • 作者 张荻 编
  • 出版社 浙江大学出版社
  • 出版时间 2011-11
  • 版次 1
  • ISBN 9787308082648
  • 定价 108.00元
  • 装帧 精装
  • 开本 16开
  • 纸张 胶版纸
  • 页数 250页
  • 字数 453千字
【内容简介】
MorphologyGeneticMaterialsTemplatedfromNatureSpeciesprovidesacomprehensiveandup-to-datecoverageofresearchonbio-inspiredfunctionalmaterialsincludingmaterialsscienceandengineeringaspectsofthefabrication,properties,andapplications.Thebookdiscussesbio-inspiredstrategiesintegratingbiotemplate,biomineralization,andbiomimesisinnature,whichareadoptedtofabricatefunctionalmaterialswithhierarchicalbio-architecturesandinterrelatedoutstandingperformances,aswellasvaluableapplicationsinphotoelectricity,photonics,photocatalysis,chemicaldetection,bio-imaging,andphotoelectrontransfercomponents/devices.
Thebookisintendedforresearchersandgraduatestudentsinthefieldsofmaterialsscience,chemistry,nanotechnology,semiconductor,biotechnology,environmentalengineering,etc.
【目录】
1FunctionalMaterialsTemplatedfromNaturalPlants
1.1Introduction
1.2MorphogeneticMaterialsfromNaturalPlants
1.2.1Synthesisof(Fe203),NickelOxide(NiO)andZincOxide(ZnO)fromNaturalPlants
1.2.2BiomorphicA1203andSnO2byUsingCottonasBioTemplates
1.2.3BiomorphicSynthesisofMetalOxideDopedwithMetal(N-TiO2,Ag-A1203)
1.2.4BiotemplateFabricationofSnO2andTiO2MaterialsbyaSonochemicalMethod
1.2.5BiomorphicFunctionalMetalOxidesfromPlantLeaves
1.3ApplicationsoftheSynthesizedBiomorphicMaterials
1.3.1AdsorbentsforCopperIonsRemovalwithSurfaceFunctionalizedSoybeanStraw
1.3.2PolymerFunctionalizedActivatedCarbon(fromRiceHusk)forCu2+Removal
1.3.3MagneticNanoparticlesFunctionalizedActivatedCarbonforDyeRemoval
1.3.4TiO2withHierarchicalStructuresFabricatedfromWoodforPhotocatalyst
1.3.5GasSensingPropertiesofWood-TemplatedOxides
1.4Summary
References

2Morph-GenetieMaterialsInspiredfromButterflyWingScales
2.1Introduction
2.2SynthesisApproachesofButterflyWingsReplicas
2.2.1ChemicalSolutionsSoakingMethod
2.2.2SonochemicalProcessingMethod
2.2.3SolvothermalNano-ComplexProcessingMethod
2.2.4Summary
2.3OpticalPropertiesofButterflyWings,HybridsorReplicas
2.3.1FabricationofIridescentZincOxideReplicasfromTransparentButterflyWingsTemplates
2.3.2FabricationofLarge-AreaIridescentInorganicReplicas
2.3.3FabricationofNanocompositewithNovelOpticalEffect
2.4GasSensorPropertiesofButterflyWings,HybridsorReplicas
2.4.1CharacterizationofthePorousHierarchicalGas-SensorMicrostructuresTemplatefromButterflyWings
2.4.2ResearchontheGas-SensorPropertiesoftheSnO2ReplicasofButterflyWings
2.5HighLightHarvestEfficiencyPhotoanodeUsedinSolarCells
2.6Conclusion
References

3Morph-GeneticMaterialsInspiredDiverseHierarchicalBio-Architectures
3.1Introduction
3.2FunctionalMetalOxidesNano-ArchitectureswithEggshellMembraneHierarchy
3.2.1BiotemplatingSol-GelTechniquesforHierarchicalMetalOxides
3.2.2HierarchicalNanostructuredSnO2asGasSensors
3.2.3Pd-PdONanoclustersReinforcedHierarchicalTiO2FilmswithExcellentPhotocatalysis
3.3Morph-GeneticMaterialswithDiatomastheTemplates
3.4Morph-GeneticMaterialswithBacteriaastheTemplates
3.5HybridNanocompositesDerivedfromReactiveNaturalScaffolds
3.5.1NaturalBiofibersBasedHybridNanocomposites
3.5.2HierarchicalMorph-GeneticNanocomposites
3.5.3IridescentNanocomposites:NovelPhotonicCrystals
References

4Morph-GeneticComposites
4.1Morph-GeneticCompositesBasedonPlantMaterials
4.1.1SynthesisofMorph-GeneticCompositesfromNaturalPlants
4.1.2PropertiesoftheSynthesizedBiomorphicMaterials
4.1.3Summary
4.2FunctionalNanostructures/BioscaffoldsNanocomposies
4.2.1NaturalBiofibersBasedOpticalNanocomposites
4.2.2HybridNanocompositeswithNaturalPhotonicCrystalsastheMatrices
References
Index
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