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光控阳离子聚合和自由基聚合的相互转换。

Photocontrolled Interconversion of Cationic and Radical Polymerizations.

机构信息

Cornell University , Ithaca, New York 14853, United States.

出版信息

J Am Chem Soc. 2017 Aug 9;139(31):10665-10668. doi: 10.1021/jacs.7b06661. Epub 2017 Jul 27.

Abstract

The ability to combine two polymerization mechanisms in a one-pot setup and switch the monomer selectivity via an external stimulus provides an excellent opportunity to control polymer sequence and structure. We report a strategy that enables monomer incorporation to be determined via the selection of the wavelength of light through selective activation of either cationic or radical processes. This method enables the synthesis of varying polymeric structures under identical solution conditions but with simple modulation of the external stimulus. Additionally, changes in the ratios of the two photocatalysts afford complementary chemical control over these reactions to design elaborated polymeric structures. Our strategy takes advantage of the unique regulation that can be accessed through light.

摘要

这种在一锅法中结合两种聚合机制并通过外部刺激切换单体选择性的能力为控制聚合物序列和结构提供了极好的机会。我们报告了一种策略,该策略通过选择性激活阳离子或自由基过程来选择光的波长来确定单体的掺入,从而可以确定单体的掺入。这种方法能够在相同的溶液条件下合成不同的聚合物结构,而只需简单地调节外部刺激即可。此外,两种光催化剂的比例变化为这些反应提供了互补的化学控制,从而设计出复杂的聚合物结构。我们的策略利用了通过光可以获得的独特调节。

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