Kaewsaiha Ploysai, Matsumoto Kozo, Matsuoka Hideki
Department of Polymer Chemistry, Kyoto University, Kyoto 615-8510, Japan.
Langmuir. 2004 Aug 3;20(16):6754-61. doi: 10.1021/la0491145.
We synthesized an ionic amphiphilic diblock copolymer, poly(hydrogenated isoprene)-b-poly(styrenesulfonic acid) (PIp-h2-b-PSS), by living anionic polymerization, and the nanostructure of its monolayer spread on a water surface was directly investigated by the in situ X-ray reflectivity technique. The monolayer of the diblock copolymer on a water surface had a smooth hydrophobic PIp-h2 layer on water and a "carpet"/polymer brush double layer in a hydrophilic sodium polystyrene sulfonate (PSSNa) layer under the water. The surface pressure dependence and PSSNa chain length dependence of the PIp-h2 layer thickness and the brush nanostructure were quantitatively studied. The effect of salt concentration in the subphase was also investigated in aqueous solutions containing 0-2 M NaCl. The salt effect on monolayer structure occurred at around 0.2 M. The thickness of the PSS brush layer decreased at salt concentrations above 0.2 M, while no structural change was observed below 0.2 M. This critical salt concentration is thought to be related to the balance of ionic concentrations inside the brush and in bulk solution.
我们通过活性阴离子聚合合成了一种离子型两亲性二嵌段共聚物,聚(氢化异戊二烯)-b-聚(苯乙烯磺酸)(PIp-h2-b-PSS),并利用原位X射线反射技术直接研究了其铺展在水面上的单分子层的纳米结构。二嵌段共聚物在水面上的单分子层在水面上有一个光滑的疏水PIp-h2层,在水下的亲水性聚苯乙烯磺酸钠(PSSNa)层中有一个“地毯”/聚合物刷双层结构。定量研究了PIp-h2层厚度和刷状纳米结构对表面压力的依赖性以及对PSSNa链长的依赖性。还在含有0-2 M NaCl的水溶液中研究了亚相盐浓度的影响。盐对单分子层结构的影响发生在约0.2 M左右。在盐浓度高于0.2 M时,PSS刷层的厚度减小,而在低于0.2 M时未观察到结构变化。这种临界盐浓度被认为与刷层内部和本体溶液中离子浓度的平衡有关。