首页> 外文OA文献 >A PROCEDURE IDENTIFYING A POLYACETYLENE INITIATOR OF OLEFIN METATHESIS - THE REACTIVITIES OF METAL CARBENES TOWARD ALKENES AND ALKYNES
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A PROCEDURE IDENTIFYING A POLYACETYLENE INITIATOR OF OLEFIN METATHESIS - THE REACTIVITIES OF METAL CARBENES TOWARD ALKENES AND ALKYNES

机译:确定烯烃介导多烯引发剂的方法-金属碳对烯烃和烯烃的反应性

摘要

[[abstract]]FWhen phenylacetylene plus tungsten hexachloride initiate the metathesis of cyclopentene, poly(phenylacetylene) is found attached to the resulting polypentenamer chains. The average amount of this poly(phenylacetylene) does not vary as the growth of the polypentenamer chains is checked by added diphenylacetylene, showing it to be present as a block at their start. The implication is that the metathesis is initiated by the growning acetylene writing with the olefin, strong evidence for the hypothesis that the acetylene polymerizatrion is propagated by metal-carbenes. The variations that occur in the length of the chains and the amount of poly(phenylacetylene) attached to the average chain as the acetylene concentration is varied are analyzed for the underlying kinetic parameters. The stabilized metal-carbenes propagating the phenylacetylene polymerization react 3,000 times more quickly with phenylacetylene than with cyclopentene, whereas the less stabilized metal-carbenes propagating the cyclopentene, metathesis select 17-fold in the opposite direction. Diphenylacetylene is 26 times more effective than phenylacetylene in quenching the metathesis, and 2.4 times more effective than phenylmethylacetylene. The key to the experiments is the observation that diphenylacetylene in minute amounts quenches metathesis but does not initiate the reaction.
机译:[[摘要]] F当苯乙炔加六氯化钨引发环戊烯的复分解反应时,发现聚(苯乙炔)附着在所得的聚戊烯链上。该聚(苯乙炔)的平均量没有变化,因为通过加入二苯乙炔检查了聚戊烯链的生长,表明它在开始时以嵌段形式存在。这暗示着复分解是通过乙炔与烯烃的增长而引发的,这为乙炔聚合化酮通过金属卡宾传播的假说提供了有力证据。分析了在乙炔浓度变化时链长和连接在平均链上的聚苯乙炔的数量所发生的变化,以了解潜在的动力学参数。与苯环戊烯相比,与苯环戊烯相比,稳定的金属-卡宾与苯乙炔的反应快3,000倍,而与苯环戊烯相比,较不稳定的金属-卡宾则在相反的方向上选择17倍。在淬灭复分解反应中,二苯乙炔的效率比苯乙炔高26倍,比苯甲基乙炔高2.4倍。实验的关键是观察到少量的二苯乙炔会终止复分解反应,但不会引发反应。

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    HAN CC;

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  • 年度 2011
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  • 正文语种 [[iso]]en
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