在水-空气界面上线性增长的多电解质多层的界面整形学:从液体到固体的粘性弹性
Stéphane Pivard1, Leandro Jacomine1, Felix S Kratz2
1Institut Charles Sadron, CNRS UPR22 - Université de Strasbourg, Strasbourg, France. wiebke.drenckhan@ics-cnrs.unistra.fr.
Soft matter
|January 22, 2024
概括
在没有固定层的情况下,研究了在空气/水接口的多电解质多层形成. 研究人员发现,从类似液体的粘性弹性膜过渡到类似固体的粘性弹性膜需要5层.
科学领域:
- 接口科学 接口科学
- 材料科学 材料科学 材料科学
- 物理化学 物理化学
背景情况:
- 在固体/液体表面广泛研究过多电解质多层 (PEM) 的形成.
- 最初的层,通常沉积在化学上不同的定层上,显著影响PEM特性.
- 关于PEM构造,特别是初始层形成的开放问题仍然存在.
研究的目的:
- 为了研究NaPSS/PAH在空气/水接口的多层形成,而没有化学上不同的固层.
- 为了利用NaPSS的表面活动进行PEM建设.
- 用先进的接口技术分析这些PEM的机械性能.
主要方法:
- 使用泡形状弹性计,同时测量形状和压力.
- 采用了一般应力分解和毛细体半径动力学.
- 补充了机械分析与接口剪切形学.
主要成果:
- 证实了基于泡技术的有效性,用于表征具有非线性粘弹性质的复杂接口.
- 证明PEM属性对施工和操纵条件的高度敏感性.
- 观察到5层沉积后,从类似液体的变化到类似固体的粘弹性行为.
结论:
- 5层的值表明在空气/水接口上完全连接的多层所需的最低层数量.
- 这些发现与之前关于固体和液体接口的PEM研究一致.
- 采用的技术对于描述复杂的界面现象是强大的.
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