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Rh-Catalyzed Polymerization of Phenylacetylene: Theoretical Studies of the Reaction Mechanism, Regioselectivity, and Stereoregularity

机译:Rh催化的苯乙炔聚合反应:反应机理,区域选择性和立体规整性的理论研究

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摘要

Poly(phenylacetylene) (PPA) has versatile electrical and optical properties due to its intriguing jr-conjugated backbone, configuration, stereoregularity, and helical conformation. Detailed DFT, ONIOM, and ONIOM-MD studies are presented to understand the mechanisms of Rh-catalyzed polymerization of phenylacetylene and the factors that control its regioselectivity and stereochemistry. The polymerization proceeds via the Rh~1 insertion mechanism (ΔH~+≈ 9 kcal/ mol), although all the Rh~1, Rh~Ⅲ, and Rh-carbene types of active species are thermodynamically and kinetically plausible in solution; the RhⅢ insertion and the Rh-carbene metathesis mechanisms both have higher activation enthalpies (~22 and ~25 kcal/mol, respectively). Phenylacetylene prefers a 2,1-inserion, leading to head-to-tail regioselective PPA via a unique π-conjugative transition state. This jr-conjugative characteristic specifically favors the 2,1-insertion due to the steric repulsion. Kinetic factors play a key role in the stereoregularity. The polymerization adopting a cis-transoidal conformation is the most favorable. The kinetic difference for the insertion originates in the conformational constraints of the parent propagation chain in the transition state. These fundamental guidelines should help advance the development of efficient and structurally tailorable PPA catalysts.
机译:聚苯乙炔(PPA)由于具有吸引人的jr共轭骨架,构型,立构规整​​性和螺旋构象,因此具有多种电学和光学特性。介绍了详细的DFT,ONIOM和ONIOM-MD研究,以了解Rh催化的苯乙炔聚合反应机理以及控制其区域选择性和立体化学的因素。聚合反应通过Rh〜1插入机理(ΔH〜+≈9 kcal / mol)进行,尽管所有Rh〜1,Rh〜Ⅲ和Rh-卡宾类型的活性物质在溶液中在热力学和动力学上都是合理的。 RhⅢ插入和Rh卡宾复分解机理均具有较高的活化焓(分别为〜22和〜25 kcal / mol)。苯乙炔偏爱2,1-插入,可通过独特的π共轭过渡态产生从头到尾的区域选择性PPA。由于空间排斥,这种jr共轭特性特别有利于2,1-插入。动力学因素在立体规则性中起关键作用。采用顺-反式构象的聚合是最有利的。插入的动力学差异起源于过渡状态下母体传播链的构象约束。这些基本准则应有助于推动开发高效且结构适合的PPA催化剂。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第20期|p.7926-7941|共16页
  • 作者单位

    Fukui Institute for Fundamental Chemistry, Kyoto University, Kyoto 606-8103, Japan;

    Institute for Integrated Cell-Material Sciences (iCeMS), Kyoto University, Kyoto 606-8501, Japan;

    Institute for Integrated Cell-Material Sciences (iCeMS), Kyoto University, Kyoto 606-8501, Japan;

    Fukui Institute for Fundamental Chemistry, Kyoto University, Kyoto 606-8103, Japan,Cherry L. Emerson Center for Scientific Computation and Department of Chemistry, Emory University, Atlanta, Georgia 30322,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);
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