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Understanding the Morphologies and Polymerization mechanism of Homopolymer and Block Copolymer Brushes by Living Anionic Surface Initiated Polymerization

机译:通过活阴离子表面引发聚合理解均聚物和嵌段共聚物刷的形态和聚合机理

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Homopolymer and block copolymer brushes grafted from Au and Si(SiO_x) surfaces via living anionic surface initiated polymerization (LASIP) has been reported, 1,1-diphenylenthylene (DPE) derivative, an initiator for anionic polymerization, was grafted onto planar Si-wafer and Au surfaces by self-assembled monolayer (SAM) techniques. n-BuLi was used to activate the DPE for anionic polymerization of monomers at the interface under high vacuum. By a careful sequence of monomer introduction, reaction, and termination, homopolymer and block copolymer tethered polymer brushes were obtained. The importance of initiator activation, control of polymerization conditions, and removal of excess BuLi is emphasized. Interesting differences in morphology, thickness, grafting density, and polymerization conditions contrasts LASIP from solution and other surface initiated polymerization (SIP) mechanisms. The formation of block copolymer sequences highlights the unique utility of a living anionic polymerization technique on surfaces.
机译:已经报道了通过活阴离子表面引发的聚合(LASIP)接枝的均聚物和嵌段共聚物刷子,1,1-二苯基半烯(DPE)衍生物,用于阴离子聚合的引发剂,接枝到平面Si-晶片上和Au表面通过自组装单层(SAM)技术。 N-Buli用于在高真空下激活界面处的单体的阴离子聚合的DPE。通过仔细的单体引入序列,反应和终止,均聚物和嵌段共聚物系丝聚合物刷。强调了引发剂激活,控制聚合条件的重要性,以及除去过量的南端的去除。有趣的形态,厚度,移植密度和聚合条件差异对比溶液和其他表面引发的聚合(SIP)机制的液体。嵌段共聚物序列的形成突出了活性阴离子聚合技术在表面上的独特效用。

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