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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >pH-responsive diblock copolymer micelles at the silica/aqueous solution interface: Adsorption kinetics and equilibrium studies
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pH-responsive diblock copolymer micelles at the silica/aqueous solution interface: Adsorption kinetics and equilibrium studies

机译:二氧化硅/水溶液界面处的pH响应型二嵌段共聚物胶束:吸附动力学和平衡研究

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The adsorption behavior of two examples of a weakly basic diblock copolymer, poly(2-(dimethylamino) ethyl methacrylate)-block-poly(2-(diethylamino) ethyl methacrylate) (PDMA-PDEA), at the silica/aqueous solution interface has been investigated using a quartz crystal microbalance with dissipation monitoring and an optical reflectometer. Dynamic and static light scattering measurements have also been carried out to assess aqueous solution properties of such pH-responsive copolymers. In alkaline solution, core-shell micelles are formed above the critical micelle concentration (cmc) by both copolymers, whereas the chains are molecularly dissolved (as unimers) at all concentrations in acidic solution. As a result, the adsorption behavior of PDMA-PDEA diblock copolymers on silica is strongly dependent on both the copolymer concentration and the solution pH. Below the cmc at pH 9, the cationic PDMA-PDEA copolymers adsorb as unimers and the conformation of the adsorbed polymer is essentially flat. At concentrations just above the cmc, the initial adsorption of copolymer onto the silica is dominated by the unimers due to their faster diffusion compared to the much larger micelles. Rearrangement of the adsorbed unimers and/or their subsequent displacement by micelles from solution is then observed during an equilibration period, and the final adsorbed mass is greater than that observed below the cmc. At concentrations well above the cmc, the much higher proportion of micelles in solution facilitates more effective competition for the surface at all stages of the adsorption process and no replacement of initially adsorbed unimers by micelles is evident. However, the adsorbed layer undergoes gradual rearrangement after initial adsorption. This relaxation is believed to result from a combination of further copolymer adsorption and swelling of the adsorbed layer.
机译:弱碱性二嵌段共聚物的两个例子,聚(2-(二甲基氨基)甲基丙烯酸乙酯)-嵌段-聚(2-(二乙基氨基)甲基丙烯酸乙酯)(PDMA-PDEA)在二氧化硅/水溶液界面处的吸附行为为使用带有耗散监测和光学反射仪的石英微天平进行了研究。还已经进行了动态和静态光散射测量,以评估这种pH响应性共聚物的水溶液性质。在碱性溶液中,两种共聚物均在临界胶束浓度(cmc)以上形成核-壳胶束,而链在所有浓度下均以分子形式溶解(作为单体)在酸性溶液中。结果,PDMA-PDEA二嵌段共聚物在二氧化硅上的吸附行为强烈取决于共聚物的浓度和溶液的pH值。在pH值为9的cmc以下,阳离子PDMA-PDEA共聚物以单体形式吸附,吸附的聚合物的构型基本上是平坦的。在刚好高于cmc的浓度下,由于与大得多的胶束相比,它们的扩散速度更快,因此单体在二氧化硅上的初始吸附受单体的控制。然后在平衡期间观察到吸附的单体的重排和/或随后被胶束从溶液中置换,并且最终的吸附质量大于在cmc以下观察到的质量。在远高于cmc的浓度下,溶液中胶束的比例高得多,在吸附过程的所有阶段都有助于更有效地与表面竞争,并且没有明显的胶束替代最初吸附的单体。然而,被吸附的层在初始吸附之后经历逐渐的重排。认为这种松弛是由于进一步的共聚物吸附和吸附层的溶胀相结合而引起的。

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