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Switching the Interpenetration of Confined Asymmetric Polymer Brushes

机译:切换受限的不对称聚合物刷的互穿

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The interpenetration of two polymer brushes on approaching flat surfaces has been investigated. When compacting polymer brushes With an asymmetric charge on each surface, one neutral and the other weakly charged, we find that the brush interpenetration becomes a parameter that can be controlled by the pH of the hydrating solution. The switching between high and low degrees of brush interpenetration was investigated with numerical self-consistent field theory (nSCF) and experimentally using a sample environment which combines neutron reflectometry with a surface force type apparatus. Initially, a pair of uncharged poly(ethylene Oxide), PEO brushes are examined, where one of the brushes is deuterated to distinguish it from a hydrogenous counterpart. We find in both nSCF and these experiments that there is no significant overlap between the brushes as both compact into polymer blocks with little hydration. However, when a weak polyelectrolyte pOly(2-(dimethylarinno)ethyl methacrylate), PDMAEMA, brush is confined against a deuterated neutral PEO brush and the pH of the hydrating solution is below the polycation's pKa of 7.5) then the presence of charged groups on the PDMAEMA allows significant interpenetration to occur between the two polymer brushes on contact. This interpenetration remains once the polymer brushes dehydrate due to the confining pressure that is applied. Raising the pH to a value above the pKa, removes the charges from the polyelectrolyte brush resulting in little to interpenetration between the two brushes. Therefore, by simply adjusting the pH of the hydrating solution the interpenetration state between polymer brush pairs can be switched when one brush is a weak polyelectrolyte. Since polymer brushes are widely investigated and used to reduce friction between solid surfaces, this effect mayhave significant implications in the design and operation of polymer brushes with controllable friction properties.
机译:已经研究了两个聚合物刷在接近平坦表面上的互穿性。当压实聚合物刷子时,每个表面上都有不对称电荷,一个中性电荷而另一个弱电荷,我们发现刷子的互穿性成为可由水合溶液的pH值控制的参数。使用数值自洽场理论(nSCF)研究了电刷互穿程度的高低转换,并使用结合了中子反射仪和表面力型仪器的样品环境进行了实验。最初,检查了一对不带电的聚环氧乙烷PEO刷子,其中一个刷子经过氘化处理以区别于含氢的PEO刷子。我们在nSCF和这些实验中都发现刷子之间没有明显的重叠,因为它们都压实成几乎没有水合作用的聚合物嵌段。但是,当弱聚电解质pOly(甲基丙烯酸2-(二甲基芳基)乙基酯)PDMAEMA刷仅限于氘代中性PEO刷且水合溶液的pH值低于聚阳离子的pKa 7.5时,则存在带电基团PDMAEMA允许两个聚合物电刷在接触时发生明显的互穿。一旦聚合物刷由于施加的限制压力而脱水,该互穿仍然存在。将pH值提高到高于pKa的值,可以从聚电解质电刷中除去电荷,从而导致两个电刷之间几乎没有相互渗透。因此,通过简单地调节水合溶液的pH,当一个刷子是弱聚电解质时,可以切换聚合物刷子对之间的互穿状态。由于聚合物刷已被广泛研究并用于减少固体表面之间的摩擦,因此这种效果可能会对具有可控摩擦特性的聚合物刷的设计和操作产生重大影响。

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