Li Xiaojie, Liu Xingliang, Shi Dongjian, Wei Wei, Chen Mingqing, Liu Xiaoya
Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, No. 1800 Lihu Avenue, Wuxi, Jiangsu 214122, People's Republic of China.
ACS Macro Lett. 2018 Jul 17;7(7):778-782. doi: 10.1021/acsmacrolett.8b00443. Epub 2018 Jun 18.
Hyperbranched polymers are an important class of soft nanomaterial, but the synthesis of hyperbranched polymers with well-defined dendritic structure from readily available monomers remains a challenge in polymer chemistry. We herein report a sequential polycondensation method for the one-pot synthesis of hyperbranched polymers with tunable structure and high degree of branching from commercial available monomers. Specifically, in the polycondensation process of equimolar difunctional haloalkane (A-type monomers) and trifunctional dihydroxybenzoic acid (CB-type monomers) using KCO as the base, the aliphatic nucleophilic substitution reactivity sequence of the functional groups derived from CB monomers is C > second B > first B ≫ original B, thereby producing hyperbranched poly(ester ether)s with high degree of branching (DB > 0.6). Moreover, the surface functionality of the hyperbranched poly(ester ether)s could be facilely tailored by just introducing A-type monofunctional reagents into the one-pot A + CB polymerization system.
超支化聚合物是一类重要的软纳米材料,但从易得的单体合成具有明确树枝状结构的超支化聚合物仍然是高分子化学中的一个挑战。我们在此报告一种顺序缩聚方法,用于从市售单体一锅法合成结构可调且支化度高的超支化聚合物。具体而言,在以碳酸钾为碱,等摩尔双官能卤代烷(A型单体)和三官能二羟基苯甲酸(CB型单体)的缩聚过程中,CB单体衍生的官能团的脂肪族亲核取代反应活性顺序为C > 第二个B > 第一个B ≫ 原始B,从而生成支化度高(DB > 0.6)的超支化聚(酯醚)。此外,只需将A型单官能试剂引入一锅法A + CB聚合体系,就可以轻松调整超支化聚(酯醚)的表面官能团。