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苝衍生物自组装及金属有机骨架组装的性能与应用研究的开题报告 Abstract Thestudyontheself-assemblyofPerylenediimidederivativesandmetal-organicframework(MOF)assemblyaimstoexploretheperformanceandapplicationofthesematerials.Perylenediimidederivativeshaveuniqueπ-πstackingabilityandcanformorderedsupramolecularstructuresthroughself-assembly.MOFsareaclassofporouscrystallinematerialsthathaveattractedmuchattentionduetotheirtunableporesize,highsurfacearea,andwiderangeofapplications.Thisthesiswillfocusonthesynthesis,characterization,andperformanceevaluationofthesetwotypesofmaterials.Thegoalistounderstandtheself-organizationmechanismandassemblehigh-performancematerialsforpotentialapplicationsingasstorage,catalysis,andenergyconversion. Introduction Inrecentyears,organic-inorganichybridmaterialshaveemergedasapromisingcandidatefornumerousapplicationsduetotheiruniquestructuralandfunctionalproperties.Amongthesematerials,Perylenediimide(PDI)derivativesandmetal-organicframeworks(MOFs)haveattractedconsiderableattentionduetotheirexcellentperformanceinvariousfields.PDIderivativesareelectron-deficientaromaticcompoundswithstrongelectron-acceptingproperties.Theycanformhighlyorderedandstablesupramolecularstructuresthroughπ-πstackinginteractions.MOFs,ontheotherhand,areanovelclassofporouscrystallinematerialsmadeupofmetalionsorclustersandorganicligands.Thesematerialspossessawiderangeoffunctionalproperties,suchashighsurfacearea,tunableporesize,andthermalandchemicalstability,makingthemattractivefornumerousapplications,includinggasstorage,catalysis,andenergyconversion. Inthiswork,weaimtoexploretheself-assemblyofPDIderivativesandtheMOFassemblyprocessindetail.Wewillfocusonthesynthesisandcharacterizationofthesematerialsandevaluatetheirperformanceforvariousapplications. Objectives Theprimaryobjectivesofthisworkare: 1.TosynthesizeandcharacterizePDIderivativeswithuniquestructuralandelectronicproperties. 2.Tostudytheself-assemblybehaviorofPDIderivativesindifferentsolventsandinvestigatetheinfluenceofthesolventontheself-assemblyprocess.