Seiwert Jan, Herzberger Jana, Leibig Daniel, Frey Holger
Institute of Organic Chemistry, Johannes Gutenberg University, Duesbergweg 10-14, 55128, Mainz, Germany.
Graduate School Materials Science in Mainz (MAINZ), Staudinger Weg 9, 55128, Mainz, Germany.
Macromol Rapid Commun. 2017 Jan;38(1). doi: 10.1002/marc.201600457. Epub 2016 Nov 7.
The synthesis of thioether-bearing hyperbranched polyether polyols based on an AB/AB type copolymerization (cyclic latent monomers) is introduced. The polymers are prepared by anionic ring-opening multibranching copolymerization of glycidol and 2-(methylthio)ethyl glycidyl ether (MTEGE), which is conveniently accessible in a single etherification step. Slow monomer addition provides control over molecular weights. Moderate dispersities (Đ = 1.48-1.85) are obtained, given the hyperbranched structure. In situ H NMR copolymerization kinetics reveal reactivity ratios of r = 3.7 and r = 0.27. Using slow monomer addition, copolymer composition can be systematically varied, allowing for the adjustment of the hydroxyl/thioether ratio, the degree of branching (DB = 0.36-0.48), thermal properties, and cloud point temperatures in aqueous solution in the range of 29-75 °C. Thioether oxidation to sulfoxides enables to tailor the copolymers' solubility profile. Use of these copolymers as a versatile, multifunctional platform for orthogonal modification is highlighted. The methyl sulfide groups can be selectively alkoxylated, using propylene oxide, allyl glycidyl ether, or furfuryl glycidyl ether, resulting in functional hyperbranched polyelectrolytes. Reaction of the alcohol groups with benzyl isocyanate demonstrates successful orthogonal functionalization.
介绍了基于AB/AB型共聚(环状潜在单体)合成含硫醚超支化聚醚多元醇的方法。这些聚合物通过缩水甘油与2-(甲硫基)乙基缩水甘油醚(MTEGE)的阴离子开环多支化共聚反应制备,MTEGE可通过一步醚化方便地获得。缓慢添加单体可控制分子量。鉴于超支化结构,可获得中等分散度(Đ = 1.48 - 1.85)。原位¹H NMR共聚动力学显示反应性比r = 3.7和r = 0.27。通过缓慢添加单体,可系统地改变共聚物组成,从而调节羟基/硫醚比、支化度(DB = 0.36 - 0.48)、热性能以及水溶液中29 - 75 °C范围内的浊点温度。硫醚氧化为亚砜可调整共聚物的溶解度曲线。强调了使用这些共聚物作为正交修饰的通用多功能平台。甲基硫醚基团可使用环氧丙烷、烯丙基缩水甘油醚或糠基缩水甘油醚进行选择性烷氧基化,从而得到功能性超支化聚电解质。醇基与苄基异氰酸酯的反应证明了成功的正交功能化。