Anastasaki Athina, Waldron Christopher, Wilson Paul, Boyer Cyrille, Zetterlund Per B, Whittaker Michael R, Haddleton David
Department of Chemistry, University of Warwick, Coventry, CV4 7AL, United Kingdom.
Centre for Advanced Macromolecular Design (CAMD), The University of New South Wales, Sydney NSW 2052, Australia.
ACS Macro Lett. 2013 Oct 15;2(10):896-900. doi: 10.1021/mz4004198. Epub 2013 Sep 23.
The synthesis of well-defined high molecular weight block copolymers by sequential in situ chain extensions via Cu(0)-mediated living radical polymerization is reported. Optimal conditions for iterative high molecular weight block formation were determined using model homopolymer quasiblock systems, including methyl acrylate (MA), ethyl acrylate (EA), and -butyl acrylate (BA; each block DP ≈ 100). The PDI after each chain extension was below 1.2, with good agreement between theoretical and experimental molecular weights, while the conversion of monomer incorporation into each distinct block was 95-100% (up to 6 blocks). To demonstrate this approach for true block copolymer materials, well-defined block polymers containing MA, ethylene glycol methyl ether acrylate (EGMEA), and -butyl acrylate (BA) were prepared in high purity: diblock P(MA--EGMEA) and triblock P(MA--BA--MA). These were prepared in high yields, on multigram scales, and with purification only required at the final step. To the best of our knowledge, this is the first time that high molecular weight block copolymers have been reported using this novel technique.
报道了通过铜(0)介导的活性自由基聚合,经由连续原位链增长合成结构明确的高分子量嵌段共聚物。使用模型均聚物准嵌段体系,包括丙烯酸甲酯(MA)、丙烯酸乙酯(EA)和丙烯酸丁酯(BA;每个嵌段的聚合度约为100),确定了迭代形成高分子量嵌段的最佳条件。每次链增长后的多分散指数(PDI)低于1.2,理论分子量与实验分子量吻合良好,而单体掺入每个不同嵌段的转化率为95 - 100%(最多6个嵌段)。为了证明这种用于制备真正嵌段共聚物材料的方法,制备了高纯度的含MA、乙二醇甲基醚丙烯酸酯(EGMEA)和丙烯酸丁酯(BA)的结构明确的嵌段聚合物:二嵌段P(MA - - EGMEA)和三嵌段P(MA - - BA - - MA)。这些聚合物以高收率、多克规模制备,且仅在最后一步需要纯化。据我们所知,这是首次报道使用这种新技术制备高分子量嵌段共聚物。