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喷雾热解法制备功能材料研究进展 Title:ResearchProgressonthePreparationofFunctionalMaterialsthroughSprayPyrolysis Abstract: Spraypyrolysishasemergedasaversatiletechniqueforthesynthesisoffunctionalmaterialswithuniqueproperties,makingitapopularresearchtopicinrecentyears.Thispaperprovidesacomprehensiveoverviewoftheresearchprogressmadeinthefieldoffunctionalmaterialspreparedthroughspraypyrolysis.Thepaperbeginsbyintroducingtheprinciplesandadvantagesofthespraypyrolysismethod,followedbyanexplorationofitsapplicationsinvarioustypesoffunctionalmaterials,includingcatalyticmaterials,nanomaterials,andthinfilms.Thelatestadvancementsineachcategoryarediscussed,focusingonthesynthesisstrategies,characterizationtechniques,andpotentialapplications.Additionally,thechallengesandfuturedirectionsofspraypyrolysisinthefieldoffunctionalmaterialsareaddressed.Thisreviewaimstocontributetotheunderstandinganddevelopmentofspraypyrolysisforthesynthesisoffunctionalmaterialswithenhancedperformance. 1.Introduction 1.1PrincipleofSprayPyrolysis 1.2AdvantagesofSprayPyrolysis 1.3SignificanceofFunctionalMaterials 2.SprayPyrolysisforCatalyticMaterials 2.1CatalystSynthesisStrategies 2.2CatalyticApplications 2.3CharacterizationTechniques 2.4RecentResearchProgress 3.SprayPyrolysisforNanomaterials 3.1NanoparticleSynthesisStrategies 3.2StructuralandMorphologicalCharacterization 3.3OpticalandElectricalProperties 3.4RecentResearchProgress 4.SprayPyrolysisforThinFilms 4.1FilmDepositionTechniques 4.2StructuralandCompositionalAnalysis 4.3FunctionalPerformanceEvaluation 4.4RecentResearchProgress 5.ChallengesandFutureDirections 5.1ChallengesinSprayPyrolysis 5.2PotentialSolutionsandInnovations 5.3FutureTrendsinFunctionalMaterialSynthesis 6.Conclusion Overall,theresearchprogressinthepreparationoffunctionalmaterialsthroughspraypyrolysisispromising.Thistechniqueoffersnumerousadvantages,suchasscalability,controloverparticlesizeandmorphology,andtheabilitytoachievehomogeneity.Thesynthesisofcatalyticmaterials,nanomaterials,andthinfilmsthroughspr