Department of Polymer Science and Engineering, University of Massachusetts Amherst, Amherst, MA, 01002, USA.
Angew Chem Int Ed Engl. 2016 Dec 19;55(51):15860-15863. doi: 10.1002/anie.201609023. Epub 2016 Nov 22.
A new use of the thiol-ene reaction to generate functional, redox-tunable polymers is described. To illustrate the versatility of this approach, tailored divinyl ether monomers were polymerized with triethylene glycol dithiol to yield polymers containing either a carbonate or zwitterionic phosphocholine within the polymer backbone. Similarly, dithioerythritol was polymerized with triethylene glycol divinyl ether to yield a polymer with pendant diols and show how functional groups can be designed into either the divinyl ether or dithiol monomer. Using the thioether functional group inherent to this polymerization, all three polymers were selectively and quantitatively oxidized to either sulfoxides or sulfones by treatment with dilute hydrogen peroxide or mCPBA, respectively. With these illustrative examples, it is shown that the thiol-ene polymerization is a broad-reaching method to access a class of new redox-active polymers which contain varied and dense functional-group compositions.
本文描述了一种将硫醇-烯反应用于生成具有功能和氧化还原可调性的聚合物的新方法。为了说明这种方法的多功能性,将定制的二乙烯基醚单体与三乙二醇二硫醇聚合,得到聚合物主链中含有碳酸酯或两性离子磷酸胆碱的聚合物。同样,将二硫赤藓醇与三乙二醇二乙烯基醚聚合,得到带有侧基二醇的聚合物,并展示了如何在二乙烯基醚或二硫醇单体中设计官能团。利用这种聚合固有的硫醚官能团,通过用稀过氧化氢或间氯过氧苯甲酸分别处理,可将这三种聚合物选择性和定量地氧化为亚砜或砜。通过这些说明性示例,表明硫醇-烯聚合是一种广泛的方法,可以获得一类新的氧化还原活性聚合物,它们含有不同且密集的官能团组成。