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β-环糊精与金刚烷之间特定相互作用导致的聚合物双层形成:一项表面力研究。

Polymer bilayer formation due to specific interactions between beta-cyclodextrin and adamantane: a surface force study.

作者信息

Blomberg Eva, Kumpulainen Atte, David Christelle, Amiel Catherine

机构信息

Department of Chemistry, Surface Chemistry, Royal Institute of Technology, Drottning Kristinas väg 51, SE-100 44 Stockholm, Sweden.

出版信息

Langmuir. 2004 Nov 23;20(24):10449-54. doi: 10.1021/la048370e.

Abstract

The purposes of this study are to utilize the interactions between an adamantane end-capped poly(ethylene oxide) (PEO) and a cationic polymer of beta-cyclodextrin to build polymer bilayers on negatively charged surfaces, and to investigate the interactions between such layers. The association of this system in solution has been studied by rheology, light scattering, and fluorescence measurements. It was found that the adamantane-terminated PEO (PEO-Ad) mixed with the beta-cyclodextrin polymer gives complexes where the interpolymer links are formed by specific inclusion of the adamantane groups in the beta-cyclodextrin cavities. This results in a higher viscosity of the solution and growth of intermolecular clusters. The interactions between surfaces coated with a cationized beta-cyclodextrin polymer across a water solution containing PEO-Ad polymers were studied by employing the interferometric surface force apparatus (SFA). In the first step, the interaction between mica surfaces coated with the cationized beta-cyclodextrin polymer in pure water was investigated. It was found that the beta-cyclodextrin polymer adsorbs onto mica and almost neutralizes the surface charge. The adsorbed layers of the beta-cyclodextrin polymer are rather compact, with a layer thickness of about 60 A (30 A per surface). Upon separation, a very weak attractive force is observed. The beta-cyclodextrin solution was then diluted by pure water by a factor of 3000 and a PEO-Ad polymer was introduced into the solution. Two different architectures of the PEO-Ad polymer were investigated: a four-arm structure and a linear structure. After the adsorption of the PEO polymer onto the beta-cyclodextrin layer reached equilibrium, the forces were measured again. It was found that the weak repulsive long-range force had disappeared and an attractive force caused the surfaces to jump into contact, and that the compressed layer thickness had increased. The attractive force is interpreted as being due to a specific recognition between the hydrophobic adamantane groups on the PEO-Ad polymer and the hydrophobic cavity in the beta-cyclodextrin molecules. Furthermore, the attractive force observed on separation has increased significantly, which is a further indication of a specific interaction between the beta-cyclodextrin polymer and the adamantane groups.

摘要

本研究的目的是利用金刚烷封端的聚环氧乙烷(PEO)与β-环糊精阳离子聚合物之间的相互作用,在带负电荷的表面构建聚合物双层,并研究这些层之间的相互作用。通过流变学、光散射和荧光测量研究了该体系在溶液中的缔合情况。发现金刚烷封端的PEO(PEO-Ad)与β-环糊精聚合物混合形成复合物,其中聚合物间的连接是通过金刚烷基团特异性地包合在β-环糊精空腔中形成的。这导致溶液粘度升高和分子簇生长。采用干涉表面力仪(SFA)研究了在含有PEO-Ad聚合物的水溶液中,涂有阳离子化β-环糊精聚合物的表面之间的相互作用。第一步,研究了在纯水中涂有阳离子化β-环糊精聚合物的云母表面之间的相互作用。发现β-环糊精聚合物吸附在云母上并几乎中和了表面电荷。β-环糊精聚合物的吸附层相当致密,层厚约为60埃(每表面30埃)。分离时,观察到非常弱的吸引力。然后用纯水将β-环糊精溶液稀释3000倍,并将PEO-Ad聚合物引入溶液中。研究了PEO-Ad聚合物的两种不同结构:四臂结构和线性结构。PEO聚合物在β-环糊精层上的吸附达到平衡后,再次测量力。发现弱的排斥性长程力消失,一种吸引力导致表面突然接触,并且压缩层厚度增加。这种吸引力被解释为是由于PEO-Ad聚合物上的疏水金刚烷基团与β-环糊精分子中的疏水空腔之间的特异性识别。此外,分离时观察到的吸引力显著增加,这进一步表明β-环糊精聚合物与金刚烷基团之间存在特异性相互作用。

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