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Structural and mechanical properties of polyelectrolyte multilayer films studied by AFM

机译:AFM研究聚电解质多层膜的结构和力学性能

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摘要

Mechanical properties of polyelectrolyte multilayer thin films were studied by nanoindentation experiments using an atomic force microscope. We obtained force-distance measurements for a model polycation/polyanion multilayer system, poly(allylamine hydrochloride) (PAH), and an azobenzene-containing polyelectrolyte (P-Azo) prepared at varying charge densities. The relative Young's modulus of the films was determined as a function of the ionization fraction of the multilayer films, prepared to have identical thickness. Multilayer films assembled with polyelectrolytes of high charge density exhibited an elastic modulus that was significantly larger (nearly 2 orders of magnitude) than those prepared with low charge density. An estimate of the relative loop length between "ionic cross-links" in the multilayer films is then ascertained by analogy to previously studied covalently cross-linked polymer networks. The modulus values in our films ranged from 10(-2) to 10(-4) kPa, and this implies loop lengths of 1-50 segments. Atomic force microscopy force-distance measurements were also used to compare the relative adhesion values between polycation and polyanion layers in films constructed with varying charge densities. This was done by coating an AFM tip with multilayers and indenting into a surface containing the same multilayer film but capped with the oppositely charged surface polyelectrolyte layer. Adhesion values were typically between 0.5 and 6.7 nN and were found to depend on the ionic cross-link density of the PAH/P-Azo film, in which the highly ionically cross-linked samples exhibited the largest adhesion. [References: 46]
机译:通过使用原子力显微镜的纳米压痕实验研究了聚电解质多层薄膜的机械性能。我们获得了模型聚阳离子/聚阴离子多层体系,聚(烯丙胺盐酸盐)(PAH)和在不同电荷密度下制备的含偶氮苯的聚电解质(P-Azo)的力-距离测量结果。确定膜的相对杨氏模量与多层膜的电离分数的函数,该多层膜制备为具有相同的厚度。用高电荷密度的聚电解质组装的多层膜表现出的弹性模量比用低电荷密度制备的那些大得多(接近2个数量级)。然后通过类似于先前研究的共价交联的聚合物网络来确定多层膜中“离子交联”之间的相对环长度的估计。我们的薄膜的模量值介于10(-2)到10(-4)kPa之间,这意味着回路长度为1至50段。原子力显微镜力-距离测量还用于比较具有不同电荷密度的薄膜中聚阳离子层和聚阴离子层之间的相对粘附力值。这是通过在AFM尖端上覆盖多层并压入一个包含相同多层膜但被带相反电荷的表面聚电解质层覆盖的表面来完成的。粘附力值通常在0.5到6.7 nN之间,并且被发现取决于PAH / P-偶氮薄膜的离子交联密度,其中高度离子交联的样品表现出最大的粘附力。 [参考:46]

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