Uhlmann Petra, Skorupa Sebastian, Werner Carsten, Grundke Karina
Leibniz Institute of Polymer Research Dresden and The Max Bergmann Center of Biomaterials Dresden, Dresden, Germany.
Langmuir. 2005 Jul 5;21(14):6302-7. doi: 10.1021/la046871u.
Thin films of alternating maleic acid/anhydride copolymers (poly(octadecene-alt-maleic acid/anhydride), POMA; poly(propene-alt-maleic acid/anhydride), PPMA; poly(styrene-alt-maleic acid/anhydride), PSMA) were studied to unravel the influence of the comonomer characteristics in the backbone on the surface-energetic properties of the copolymer films in the dry state and in contact with aqueous solutions. Water contact angle measurements revealed a graduation of the wettability of the dry hydrolyzed and annealed copolymer films that was dependent on the comonomer unit. It ranged from moderately hydrophilic (PPMA, annealed gamma(sv) = 39.9 mJ/m2) to very hydrophobic (POMA, annealed, gamma(sv) = 18.4 mJ/m2) surfaces. Liquid-fluid contact angle measurements using captive air bubbles were performed in different aqueous media (pure water, phosphate-buffered saline, and 10(-)(3) M KCl of two different pH values (pH = 3 and pH = 10) to study the copolymer films in their hydrated states relevant for biointerfacial phenomena. It was found that the graduation of the wettability of the copolymer films in the dry state is overall maintained upon immersion in aqueous solutions. The dependence of the wettability on the pH value of the aqueous medium could be related to the (de)protonation of the carboxylic groups.
对交替排列的马来酸/酸酐共聚物(聚(十八烯-alt-马来酸/酸酐),POMA;聚(丙烯-alt-马来酸/酸酐),PPMA;聚(苯乙烯-alt-马来酸/酸酐),PSMA)薄膜进行了研究,以揭示主链中共聚单体特性对共聚物薄膜在干燥状态下以及与水溶液接触时的表面能性质的影响。水接触角测量结果表明,干燥的水解和退火共聚物薄膜的润湿性存在梯度变化,这取决于共聚单体单元。其范围从适度亲水(PPMA,退火后γ(sv)=39.9 mJ/m²)到非常疏水(POMA,退火后,γ(sv)=18.4 mJ/m²)的表面。使用捕获气泡在不同的水性介质(纯水、磷酸盐缓冲盐水以及两种不同pH值(pH = 3和pH = 10)的10⁻³ M KCl)中进行液-液接触角测量,以研究与生物界面现象相关的水合状态下的共聚物薄膜。结果发现,共聚物薄膜在干燥状态下的润湿性梯度在浸入水溶液后总体上得以保持。润湿性对水性介质pH值的依赖性可能与羧基的(去)质子化有关。