Zhang Zijian, Yang Miao, Zhang Xinjun, Zhang Lichu, Liu Bo, Zheng Ping, Wang Wei
The Key Laboratory of Functional Polymer Materials, Ministry of Education, Institute of Polymer Chemistry, College of Chemistry, Nankai University, Tianjin 300071, China.
Chemistry. 2009;15(10):2352-61. doi: 10.1002/chem.200802117.
A poly(urethane amide) (PUA) dendron with long alkyl chains on its periphery was synthesized and then attached to the backbone of a polyelectrolyte, in which each unit contained a positive charge, by ionizing the carboxyl groups on the apexes of the dendrons to form a dendronized polymer. We found that both the PUA dendron and the dendronized polymer could form organogels in toluene. Interestingly, both the minimum gelation concentration and the gelation time of the dendronized polymer gelator were greatly reduced compared with the dendron alone. Our investigations showed that in the gel phase the intermolecular hydrogen bonding between adjacent dendrons creates similar supramolecular structures in both the dendron and the dendronized polymer gelator, which immobilize solvent molecules by means of interactions between dendrons and solvent molecules. Further studies on the gelation kinetics indicated that the polyelectrolyte backbone plays an important role in prearranging the attached dendritic gelators orderly and quickly into the supramolecular structures through a nucleation-elongation mechanism. Therefore, the gel-forming ability of the dendritic PUA gelator is enhanced by being complexed with the polyelectrolyte. In this work, this positive macromolecular effect is discussed in detail.
合成了一种在其外围带有长烷基链的聚(氨酯酰胺)(PUA)树枝状分子,然后通过使树枝状分子顶端的羧基离子化,将其连接到一种聚电解质的主链上,该聚电解质的每个单元都带有一个正电荷,从而形成一种树枝状聚合物。我们发现PUA树枝状分子和树枝状聚合物都能在甲苯中形成有机凝胶。有趣的是,与单独的树枝状分子相比,树枝状聚合物凝胶剂的最低凝胶浓度和凝胶时间都大大降低了。我们的研究表明,在凝胶相中,相邻树枝状分子之间的分子间氢键在树枝状分子和树枝状聚合物凝胶剂中都形成了类似的超分子结构,这些超分子结构通过树枝状分子与溶剂分子之间的相互作用固定溶剂分子。对凝胶动力学的进一步研究表明,聚电解质主链在通过成核-伸长机制将附着的树枝状凝胶剂有序且快速地预排列成超分子结构方面起着重要作用。因此,树枝状PUA凝胶剂与聚电解质复合后,其凝胶形成能力得到增强。在这项工作中,对这种积极的大分子效应进行了详细讨论。