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SILAR法制备CIAS薄膜太阳电池吸收层和缓冲层 Title:PreparationofCIASThinFilmSolarCellAbsorberandBufferLayersUsingSILARMethod Abstract: Theincreasingdemandforrenewableenergysourceshasledtosignificantadvancementsinsolarcelltechnology.CIAS(CadmiumIndiumSulfide)thinfilmsolarcellshaveemergedasapromisingcandidateduetotheirhighefficiencyandcost-effectiveness.TheeffectiveutilizationofCIASthinfilmsastheabsorberandbufferlayersplaysacrucialroleinenhancingtheoverallperformanceofsolarcells.Inthisstudy,wefocusonthepreparationofCIASthinfilmsolarcellabsorberandbufferlayersusingtheSILAR(SuccessiveIonicLayerAdsorptionandReaction)method.ThemainobjectiveistooptimizethefilmstructureanddepositionparameterstoimprovethephotovoltaicpropertiesofCIAS-basedsolarcells. 1.Introduction: 1.1Background 1.2Objectives 1.3Significanceoftheresearch 2.ExperimentalMethods: 2.1Materialsandequipment 2.2SILARdepositiontechnique 2.3Characterizationtechniques 3.ResultsandDiscussion: 3.1Optimizationofdepositionparameters 3.2Structuralandmorphologicalanalysis 3.3Opticalcharacterization 3.4Electricalcharacterization 4.FabricationofCIASThinFilmSolarCells: 4.1Designandfabricationprocess 4.2PerformanceevaluationofCIAS-basedsolarcells 5.Conclusion: 5.1Summaryofthestudy 5.2Keyfindingsandimplications 5.3Futuredirections 1.Introduction: 1.1Background: Solarenergyisconsideredoneofthemostpromisingrenewableenergysourcesduetoitsabundantavailabilityandenvironmentalfriendliness.Thinfilmsolarcellshavegainedconsiderableattentioninthefieldofphotovoltaicsduetotheircost-effectivenessandpotentialforlarge-scaleproduction.Amongvariousthinfilmmaterials,CIAS(CadmiumIndiumSulfide)hasshownpromisingproperties,includingasuitablebandgap,highabsorptioncoefficient,andgoodelectricalconductivity,makingitanattractivecandidateforsolarcellapplications. 1.2Objectives: ThemainobjectiveofthisresearchistoinvestigateandoptimizetheSILAR(SuccessiveIonicLayerAdsorptionandReaction)methodforthepreparationofCIASthinfilmsolarcellabsorberandbufferlayers.Bysystematicallystudying