Liarou Evelina, Han Yisong, Sanchez Ana M, Walker Marc, Haddleton David M
University of Warwick, Department of Chemistry Library Road Coventry CV4 7AL UK
University of Warwick, Department of Physics Coventry CV4 7AL UK.
Chem Sci. 2020 May 5;11(20):5257-5266. doi: 10.1039/d0sc01512a.
Rapidly Cu-RDRP in aqueous media is investigated. The disproportionation of Cu(i)/MeTren in water towards Cu(ii) and highly reactive Cu(0) leads to O-free reaction environments within the first seconds of the reaction, even when the reaction takes place in the open-air. By leveraging this significantly fast O-reducing activity of the disproportionation reaction, a range of well-defined water-soluble polymers with narrow dispersity are attained in a few minutes or less. This methodology provides the ability to prepare block copolymers sequential monomer addition with little evidence for chain termination over the lifetime of the polymerization and allows for the synthesis of star-shaped polymers with the use of multi-functional initiators. The mechanism of is elucidated with the use of various characterization tools, and the species that participate in the rapid oxygen consumption is identified and discussed in detail.
研究了在水性介质中快速进行的铜介导的自由基链增长聚合反应(Cu-RDRP)。水中的Cu(i)/MeTren歧化生成Cu(ii)和高活性的Cu(0),即使反应在露天环境中进行,也会在反应的最初几秒内产生无氧反应环境。通过利用歧化反应这种显著快速的氧还原活性,在几分钟或更短时间内就能得到一系列具有窄分散性的明确水溶性聚合物。这种方法能够通过顺序添加单体来制备嵌段共聚物,在聚合过程中几乎没有链终止的迹象,并且可以使用多功能引发剂合成星形聚合物。利用各种表征工具阐明了反应机理,并详细鉴定和讨论了参与快速耗氧的物种。