Microcrystalline silicon and ‘micromorph’ tandem solar cells

Microcrystalline silicon and ‘micromorph’ tandem solar cells

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時(shí)間:2019-06-03

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1、PublishedinThinSolidFilms403-404,179-187,20021whichshouldbeusedforanyreferencetothisworkMicrocrystallinesiliconand‘micromorph’tandemsolarcellsArvindShah*,J.Meier,E.Vallat-Sauvain,C.Droz,U.Kroll,N.Wyrsch,J.Guillet,U.GrafInstituteforMicrotechnology(IMT),UniversityofNeuchatel,??CH-

2、2000Neuchatel,SwitzerlandAbstractThecaseforthin-filmsiliconasoneofthemainfutureoptionsforcost-effectivephotovoltaicsolarcellsisoutlined.Thelimitationsofpresentamorphoussilicon(a-Si:H)solarcellsarebrieflymentioned.Hydrogenatedmicrocrystallinesilicon(mc-Si:H)depositedbyPECVD(plasm

3、a-enhancedchemicalvapordeposition)atlowsubstratetemperatures(approx.2008C)constitutesanewandadditionalpossibilityforsolarcells.Propertiesofintrinsicmc-Si:HlayersdepositedbyPECVDatVHF(veryhighfrequency)excitationfrequenciesarelisted,togetherwiththenecessaryconditionsforobtainingd

4、evice-gradematerial.Performancesobtainedsofarwithmc-Si:Hsolarcellsaregiven;thelatterarecomparedwithestimatedlimitsforpn-andpin-typedeviceswithEgs1.1eV.Finally,presentperformancesandfutureperspectivesfor‘micromorph’(mc-Si:Hya-Si:H)tandemsolarcellsarediscussed.Keywords:Thin-filmsi

5、licon;Photovoltaicsolarcells;c-Si:Hlayers;Micromorph1.Introductiontechnologypresentlyaccountsforover80%ofPVmodulesproduced,andeventhoughithasinthepastForphotovoltaic(PV)solarenergyconversiontotwodecadescontributedtoasubstantialdecreaseinPVbecomeasubstantialcontributortothegenera

6、lproduc-moduleprices,itsfurtherpricereductionpotentialcantionofelectricity,amassiveincreaseinmoduleproduc-beconsideredtoberelativelymodest.Indeed,atthistionvolumeoverthepresentvalueofapproximatelymoment,pricesofPVmodulesfabricatedfromcrystal-300MWpyyearisneeded.Indeed,itisonlyat

7、worldlinesiliconwafersarestagnatingatalevelofapproxi-productionlevelsintheorderofmagnitudeof100–matelyUS$4yWp(Fig.1).1000GWpyyearthatPVsolarmoduleswillhaveaThereis,therefore,growinginterestinthin-filmPVnoticeableeffectinthesubstitutionoffossilfuelsorintechnologiesw1x.thereplacem

8、entofnuclearpowerstationsonaglobalAmongstthese,

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