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Tuning Wet Adhesion of Weak Polyelectrolyte Multilayers

机译:调整弱聚电解质多层的湿粘附

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Weak polyelectrolyte multilayers (PEMs) assembled by the layer-by-layer method are known to become tacky upon contact with water and behave as a viscoelastic fluid, but this wet adhesive property and how it can be modified by external stimuli has not yet been fully explored. We present here a study on the wet adhesive performance of PEMs consisting of branched poly(ethylene imine) and poly(acrylic acid) under controlled conditions (e.g., pH, type of salt, and ionic strength) using a 90 degrees peel test. The multilayers demonstrate stick-slip behavior and fail cohesively in nearly all cases. The peel force is the highest at neutral pH, and it decreases in both acidic/basic environments because of inhibited polyelectrolyte mobility. The addition of salts with various metal ions generally reduces the peel force, and this effect tracks with the ionic strength. When transition metal ions are used, their ability to form coordination bonds increases the peel force, with two exceptions (Cu2+ and Zn2+). With a transition metal ion such as Fe3+, the peel force first increases as a function of the concentration and then eventually decreases. The peel force increases proportionally to the peel rate. The films are also characterized via zeta potential (when assembled onto colloidal particles) and shear rheometry. This work provides insight into both the wet adhesive properties of PEMs and the interactions between PEMs and metal ions.
机译:已知通过层 - 逐层方法组装的弱聚电解质多层(PEMS)在与水接触并表现为粘弹性流体时变形,但是这种湿粘合性能以及如何通过外部刺激改性尚未完全修饰探索。我们在这里介绍了使用90度剥离试验的受控条件(例如,pH,盐和离子强度)的分支聚(乙烯亚胺)和聚(丙烯酸)组成的PEM的湿粘合性能研究。多层展示了粘滑行为,并在几乎所有情况下都在造成效果。剥离力在中性pH下最高,并且由于抑制聚电解质迁移率,它在酸性/基础环境中减少。添加具有各种金属离子的盐通常会降低剥离力,并具有离子强度的这种效果轨道。当使用过渡金属离子时,它们形成配位键的能力增加了剥离力,具有两个例外(Cu2 +和Zn2 +)。利用诸如Fe3 +的过渡金属离子,剥离力首先随着浓度的函数而增加,然后最终降低。剥离力与剥离率成比例地增加。薄膜的特征还通过Zeta电位(组装到胶体颗粒上时)和剪切流变仪的特征。这项工作提供了对PEM的湿粘合性能和PEMS和金属离子之间的相互作用的洞察力。

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