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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >ea Controllable Self-Assembly of Amphiphilic Dendrimers on a Silica Surface: The Effect of Molecular Topological Structure and Salinity
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ea Controllable Self-Assembly of Amphiphilic Dendrimers on a Silica Surface: The Effect of Molecular Topological Structure and Salinity

机译:硅表面上两亲树状聚合物的可控自组装:分子拓扑结构和盐度的影响

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摘要

The adsorption kinetics and equilibrium of amphiphilic dendrimers based on poly(amidoamine) modified with a dodecyl chain, G(n)QPANIC(12) (n represents the generation number), with different generation numbers at a silica water interface have been investigated. The effect of molecular shape with different charge characteristics on the adsorption kinetics, adsorption isotherms, and the conformation of a self-assembled layer has been elucidated. For the adsorption kinetics, two steps were observed including the adsorption of individual molecules at concentrations below the critical micelle concentration (cmc) and the predominant adsorption of aggregates above the cmc. However, the adsorption isotherm, as a function of the generation number, presented an exceptional characteristic, in which a decrease in adsorption mass with different levels occurred in a high generation of amphiphilic dendrimers, depending on the balance of hydrophobic interaction and electrostatic repulsion. Atomic force microscopy imaging showed that flattened films with pores (spacing) of various shapes and roughness of 3-4 nm were formed, of which the pores (spacing) decreased obviously as the generation number increased. The addition of electrolyte (NaBr) has a great effect on the film morphology formed by the G(3)QPAMC(12) dendrimer adsorbed at the silica water interface, showing that the film became closer with smaller pores with increased NaBr concentration.
机译:研究了基于十二烷基链修饰的聚((胺)G(n)QPANIC(12)(n代表世代数)的两亲树状聚合物在二氧化硅水界面的吸附动力学和平衡。阐明了具有不同电荷特性的分子形状对吸附动力学,吸附等温线和自组装层构象的影响。对于吸附动力学,观察到两个步骤,包括在低于临界胶束浓度(cmc)的浓度下单个分子的吸附和在cmc上方的聚集体的主要吸附。但是,吸附等温线与世代数成正比,因此表现出出众的特性,其中两亲树状聚合物的高生成量取决于疏水性相互作用和静电排斥的平衡,使吸附质量下降的程度不同。原子力显微镜成像表明,形成的平整膜具有各种形状的孔(间距)和粗糙度为3-4 nm,其中随着世代数的增加,孔(间距)明显减小。电解质(NaBr)的添加对吸附在二氧化硅水界面的G(3)QPAMC(12)树枝状大分子形成的膜形态有很大影响,表明随着NaBr浓度的增加,膜变得更紧密,孔越小。

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