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首页> 外文期刊>Journal of the American Chemical Society >Chemoselective, Stereospecific, and Living Polymerization of Polar Divinyl Monomers by Chiral Zirconocenium Catalysts
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Chemoselective, Stereospecific, and Living Polymerization of Polar Divinyl Monomers by Chiral Zirconocenium Catalysts

机译:手性锆烯手性催化剂对极性二乙烯基单体的化学选择性,立体特异性和活性聚合

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摘要

This contribution reports the first chemoselective, stereospecific, and living polymerization of polar divinyl monomers, enabled by chiral ansa-zirconocenium catalysts through an enantiomorphic-site controlled coordination-addition polymerization mechanism. Silyl-bridged-ansa-zirconocenium ester enolate 2 has been synthesized and structurally characterized, but it exhibits low to negligible activity and stereospecificity in the polymerization of polar divinyl monomers including vinyl methacrylate (VMA), allyl methacrylate (AMA), 4-vinylbenzyl methacrylate (VBMA), and N,N-diallyl acrylamide (DAA). In contrast, ethylene-bridged-ansa-zirconocenium ester enolate 1 is highly active and stereospecific in the polymerization of such monomers including AMA, VBMA, and DAA. The polymerization by 1 is perfectly chemoselective for all four polar divinyl monomers, proceeding exclusively through conjugate addition across the methacrylic C=C bond, while leaving the pendant C=C bonds intact. The polymerization of DAA is most stereospecific and controlled, producing essentially stereoperfect isotactic PDAA with [mmmm] > 99%, M_n matching the theoretical value (thus a quantitative initiation efficiency), and a narrow molecular weight distribution (D = 1.06-1.16). The stereospecificity is slightly lower for the AMA polymerization but still leading to highly isotactic poly(allyl methacrylate) (PAMA) with 95-97% [mm]. The polymerization of VBMA is further less stereospecific, affording PVBMA with 90-94% [mm], while the polymerization VMA is least stereospecific. Several lines of evidence from both homo- and block copolymerization results have demonstrated living characteristics of the AMA polymerization by 1. Mechanistic studies of this polymerization have yielded a monometallic coordination-addition polymerization mechanism involving the eight-membered chelating intermediate. Post-functionalization of isotactic polymers bearing the pendant vinyl group on every repeating unit via the thiol-ene "click" reaction achieves a full conversion of all the pendant double bonds to the corresponding thioether bonds. Photocuring of such isotactic polymers is also successful, producing an elastic material readily characterizable by dynamic mechanical analysis.
机译:该贡献报道了极性二乙烯基单体的首次化学选择性,立体有择和活性聚合,这是通过对映体位点控制的配位加成聚合机理,通过手性ansa-zirconocenium催化剂实现的。已合成并结构表征了甲硅烷基桥烷氧基锆烯醇酯烯酸酯2,但在极性二乙烯基单体(包括甲基丙烯酸乙烯酯(VMA),甲基丙烯酸烯丙酯(AMA),甲基丙烯酸4-乙烯基苄酯)的极性二乙烯基单体的聚合反应中,其活性低至可忽略不计。 (VBMA)和N,N-二烯丙基丙烯酰胺(DAA)。相反,在这些单体包括AMA,VBMA和DAA的聚合中,乙烯桥联的ansa-锆烯二鎓烯醇酯1具有很高的活性和立体选择性。对于所有四个极性二乙烯基单体,由1进行的聚合反应都是完全化学选择性的,仅通过跨甲基丙烯酸C = C键的共轭加成进行,同时保持C = C键的悬垂。 DAA的聚合反应具有最高的立体定向性和可控制性,可生产出具有[mmmm]> 99%,M_n与理论值(因此具有定量的起始效率)相匹配且分子量分布窄(D = 1.06-1.16)的基本上完全立体的等规PDAA。 AMA聚合的立体特异性略低,但仍导致具有95-97%[mm]的高度全同立构聚甲基丙烯酸烯丙酯(PAMA)。 VBMA的聚合还具有较低的立体定向性,可提供90-94%[mm]的PVBMA,而聚合的VMA具有最低的立体定向性。来自均聚和嵌段共聚结果的几条证据已通过1证明了AMA聚合的活性特征。对该聚合的机理研究得出了涉及八元螯合中间体的单金属配位加成聚合机理。通过硫醇-烯的“点击”反应在每个重复单元上带有乙烯基侧基的全同立构聚合物的后官能化可实现所有侧基双键完全转化为相应的硫醚键。这样的全同立构聚合物的光固化也是成功的,产生了易于通过动态力学分析表征的弹性材料。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2015年第29期|9469-9480|共12页
  • 作者单位

    Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523-1872, United States;

    Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523-1872, United States;

    Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523-1872, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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