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含生物可降解聚酯、聚氨基酸嵌段共聚物的合成与性能研究的中期报告 Introduction概述 Environmentalpollutioncausedbynon-biodegradablepolymershasbecomeamajorchallengetosustainabledevelopment.Asaresult,thereisanurgentneedforthedevelopmentofsustainable,biodegradablepolymers.Biodegradablepolyestershaveattractedsignificantattentionbecauseoftheirexcellentbiodegradabilityandbiocompatibility.However,theirphysicalandmechanicalpropertiesneedtobeimprovedtomeetpracticalrequirements.Inthisstudy,weproposedanovelapproachtoenhancethephysicalandmechanicalpropertiesofbiodegradablepolyestersbyincorporatingpolyaminoacidblockcopolymersintothepolyestermatrix. 非可降解聚合物造成的环境污染已成为可持续发展的主要挑战。因此,开发可持续、可降解的聚合物迫在眉睫。由于其优异的降解性和生物相容性,生物可降解聚酯备受关注。然而,它们的物理和机械性能需要改进以满足实际需求。在本研究中,我们提出了一种新方法,通过将聚氨基酸嵌段共聚物引入聚酯基体中,来增强其物理和机械性能。 Methods方法 Poly(L-lactide-co-glycolide)(PLGA)wassynthesizedbyring-openingpolymerizationofL-lactideandglycolideinthepresenceofstannousoctoateasacatalyst.Poly(L-lactide-co-glycolide)-b-poly(γ-benzyl-L-glutamate)(PLGA-PBLG)blockcopolymerswerepreparedbythering-openingpolymerizationofγ-benzyl-L-glutamateN-carboxyanhydrideinthepresenceofPLGAasamacroinitiator.ThePLGAandPLGA-PBLGcopolymerswerecharacterizedbyNMRandGPC. 在辛酸亚锡的催化下,通过L-乳酸和乙二醇酸的环开聚合合成聚(L-乳酸-共-乙二醇酸)(PLGA)。通过γ-对苯甲酰基-L-谷氨酸-N-羧酸酐的环开聚合,在PLGA作为巨大初始剂的存在下合成了嵌段共聚物聚(L-乳酸-共-乙二醇酸)-b-聚(γ-苯甲酰-L-谷氨酸)(PLGA-PBLG)。通过NMR和GPC进行了PLGA和PLGA-PBLG嵌段共聚物的表征。 ResultsandDiscussion结果与讨论 ThemolecularweightandcompositionofthePLGAandPLGA-PBLGcopolymerswereanalyzedbyGPCandNMR.Thecopolymerblocklengthswerevariedtoinvestigatetheireffectsonthephysicalandmechanicalpropertiesofthematerials.TheresultsshowedthatthemechanicalpropertiesofthematerialsweregreatlyimprovedwiththeincorporationofthePLGA-PBLGcopolymers.Theelongationatbreakincreasedbyupto150%,andthetensilestrengthincreasedbyupto80%comparedtopurePLGA.Thisimprovementcouldbeattributedtotheformationofmicrophasesbytheself-assemblyoftheblockcopolymers,whichprovideareinforcingeffectforthematerial.Theresultsalsoshowedthatincreasingthemolecularweightofthecopolym