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A(x)BA(x)-type block-graft polymers with middle soft segments and outer hard graft chains by ruthenium-catalyzed living radical polymerization: Synthesis and characterization

机译:钌催化活性自由基聚合合成具有中间软链段和外部硬接枝链的A(x)BA(x)型嵌段接枝聚合物:合成与表征

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Ruthenium-catalyzed living radical polymerization was applied to the synthesis of a series of all methacrylic well-defined A(x)BA(x)-type block-graft copolymers consisting of soft middle segments [dodecyl methacrylate (DMA)] and hard outer graft chains [methyl methacrylate (MMA)] with controlled lengths of the backbone and graft chains and controlled graft numbers. This synthetic method was based on the CHCl2(COPh)/Ru(Ind)Cl(PPh3)(2)-initiated sequential living radical block copolymerization of DMA and 2-(trimethylsilyoxy)ethyl methacrylate (TMSHEMA) followed by the direct transformation of the silyloxy groups into the ester with C-Br bond by 2-bromoisobutyroyl bromide and the ruthenium-catalyzed "grafting-from" polymerization of MMA. A series of the block-graft copolymers were then characterized by NMR, size-exclusion chromatography (SEC), multiangle laser light scattering (MALLS), differential scanning calorimetry (DSC), dynamic viscoelasticity, transmission electron microscopy (TEM), and atomic force microscopy (AFM). The NMR and SEC-MALLS indicate the well-defined synthesis of the A(x)BA(x) block-graft copolymers with graft chains as branched structure. The DSC and viscoelasticity show the presence of two transitions suggesting a microphase separation, which was observed by TEM and proved different from that of the ABA triblock copolymer with the same composition. A visualization of single molecules by AFM was achieved for the first time to show the dumbbell-like structure.
机译:钌催化的活性自由基聚合反应被用于合成由柔软的中间链段[甲基丙烯酸十二烷基酯(DMA)]和硬的外部接枝组成的一系列所有甲基丙烯酸的定义明确的A(x)BA(x)型嵌段接枝共聚物链[甲基丙烯酸甲酯(MMA)],其主链和接枝链的长度受控制,且接枝数目受控制。该合成方法基于DMA与DMA和甲基丙烯酸2-(三甲基甲硅烷氧基)乙酯(TMSHEMA)的CHCl2(COPh)/ Ru(Ind)Cl(PPh3)(2)引发的顺序活性自由基嵌段共聚,然后直接转化甲硅烷氧基被2-溴异丁酰基溴与C-Br键形成酯,并且钌催化MMA的“接枝”聚合。然后通过NMR,尺寸排阻色谱(SEC),多角度激光散射(MALLS),差示扫描量热法(DSC),动态粘弹性,透射电子显微镜(TEM)和原子力对一系列嵌段接枝共聚物进行表征显微镜(AFM)。 NMR和SEC-MALLS表明以接枝链为支链结构的A(x)BA(x)嵌段接枝共聚物的定义明确。 DSC和粘弹性表明存在两个转变,表明存在微相分离,这通过TEM观察到并证明与具有相同组成的ABA三嵌段共聚物的相变不同。首次通过原子力显微镜对单个分子进行了可视化,以显示哑铃状结构。

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