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通过异裂键断裂进行苯阳离子的机械化学制备。

The mechanochemical production of phenyl cations through heterolytic bond scission.

作者信息

Shiraki Tomohiro, Diesendruck Charles E, Moore Jeffrey S

机构信息

Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, 05 N. Mathews Ave., Urbana, IL 61801, United States.

出版信息

Faraday Discuss. 2014;170:385-94. doi: 10.1039/c4fd00027g.

Abstract

High mechanical forces applied to polymeric materials typically induce unselective chain scission. For the last decade, mechanoresponsive molecules, mechanophores, have been designed to harness the mechanical energy applied to polymers and provide a productive chemical response. The selective homolysis of chemical bonds was achieved by incorporating peroxide and azo mechanophores into polymer backbones. However, selective heterolysis in polymer mechanochemistry is still mostly unachieved. We hypothesized that highly polarized bonds in ionic species are likely to undergo heterolytic bond scission. To test this, we examined a triarylsulfonium salt (TAS) as a mechanophore. Poly(methyl acrylate) possessing TAS at the center of the chain (PMA-TAS) is synthesized by a single electron transfer living radical polymerization (SET-LRP) method. Computational and experimental studies in solution reveal the mechanochemical production of phenyl cations from PMA-TAS. Interestingly, the generated phenyl cation reacts with its counter-anion (trifluoromethanesulfonate) to produce a terminal trifluoromethyl benzene structure that, to the best of our knowledge, is not observed in the photolysis of TAS. Moreover, the phenyl cation can be trapped by the addition of a nucleophile. These findings emphasize the interesting reaction pathways that become available by mechanical activation.

摘要

施加于聚合物材料的高机械力通常会引发非选择性的链断裂。在过去十年中,人们设计了机械响应分子(机械基团)来利用施加于聚合物的机械能,并产生有效的化学反应。通过将过氧化物和偶氮机械基团引入聚合物主链,实现了化学键的选择性均裂。然而,聚合物机械化学中的选择性异裂大多仍未实现。我们推测离子物种中的高极化键可能会发生异裂键断裂。为了验证这一点,我们研究了一种三芳基锍盐(TAS)作为机械基团。通过单电子转移活性自由基聚合(SET-LRP)方法合成了在链中心含有TAS的聚(丙烯酸甲酯)(PMA-TAS)。溶液中的计算和实验研究揭示了PMA-TAS发生机械化学作用生成苯基阳离子的过程。有趣的是,生成的苯基阳离子与其抗衡阴离子(三氟甲磺酸盐)反应,生成末端三氟甲基苯结构,据我们所知,在TAS的光解过程中未观察到这种结构。此外,通过添加亲核试剂可以捕获苯基阳离子。这些发现强调了机械活化可产生的有趣反应途径。

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