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Fabrication of nanomaterials using anodic aluminum oxide and(2)

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导读: etching. 期刊文章 Fig.6showsthetypicalRamanspectrumoftheCdSnanostructurematerials.BecauseRamanscatteringisverysensitivetothemicro-structureofnanocrystallinematerials,itisalsousedheretoclarifythecryst

etching.

期刊文章

Fig.6showsthetypicalRamanspectrumoftheCdSnanostructurematerials.BecauseRamanscatteringisverysensitivetothemicro-structureofnanocrystallinematerials,itisalsousedheretoclarifythecrystallinityoftheCdSnanostructurematerials.TheRamanpeakslocatedataround303,and602cmÀ1correspondto rst-andsecond-orderlongitudinalopticalphononmodesofCdS,respectively.Thepeakpositionsareanalogoustothose(303and604cmÀ1)ofsinglecrystallineCdS[30],indicatingthattheCdSnanostructurematerialshaveasimilarcrystalstructureofthebulkCdS.

Thephotoluminescence(PL)oftheCdSnanomaterialssynthe-sizedintheAAOtemplateandporousaluminamembraneisshowninFig.7.TheCdSnanomaterialembeddedinAAOtemplatewith15nmporesizedidn’texhibitanyPLpeakduetosmallamountofCdSnanomaterialsobtainedfromthedissolvedsolution.Allsamples

Fig.7.PLspectraoftheCdSnanomaterialssynthesizedintheAAOtemplateandporousaluminamembranewithvariousporediameters.ThePLspectraweremeasuredat5Kandthewavelengthoftheexcitationlaserwas531

nm.

haveabroadpeakbetween525nmand570nm(correspondingto2.36eVand2.18eV).Inpolycrystallinesystems,thePLemissionlinesarenotsharppeaksbutarebroadbandbecauseofthepresenceofmanyrecombinationsites[31].Fromthesespectra,agreenbandfor30nmporesizeisobservedat2.36eV.Thegreenemissionbandscorrespondingtoa2.3eVwereattributedintheliteraturetothetransitionofsulfurvacancy(VS)tothevalencebandandthedonoreacceptorpairsrecombination[32,33].Theshiftofthepeak(noworangeemissionat2.18eV)andthehigherpeakintensityareobservedwhenthesampleissynthesizedinthetemplatewithlargerporediameter,suggestingthatthesulfur-de cientdefectsatthesurfacesofCdSnanostructurematerialsisincreased.SincethisCdSnanomaterialsarefabricatedonthebasisoftheAAOtemplatewithorderedarrangementofthenanopores,thiskindoftemplatewillbeusefulinfabricatingAl-basednanoscaledlightssource.

4.Conclusions

Insummary,wehavesynthesizedthehexagonalCdSnanostructurematerialsintheAAOtemplatesusingchemicalbathdeposition.Theas-preparedCdSnanostructurematerialswith15e200nmintheporesizeand40mminlengthhavebeencharacterizedbyFE-SEM,XRD,Raman,andPLspectrum.TheXRDpatternoftheembeddedCdSnanomaterialsindicatedthehexagonallatticewiththedominantcrystalorientationsof<002>and<103>.Itwasfoundthatthepreferentialgrowthofc-axiswasimprovedastheporediameterwaslarger.Furthermore,CBDmethodisalsobelievedtobeappropriateforthegrowthofothersemiconductornanostructurematerials,andpreparationofmanylow-dimensionalnanomaterialssuchasnanodotsand

nanotubes.

期刊文章

H.-M.Yu,J.Lee/CurrentAppliedPhysics11(2011)S339eS345S345

Acknowledgements

ThisworkwassupportedbytheKoreaResearchFoundation(KRF)grantfundedbytheKoreagovernment(MEST)(No.2010-0015850).References

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