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Measurements of dispersion forces between colloidal latex particles with the atomic force microscope and comparison with Lifshitz theory

机译:用原子力显微镜测量胶乳粒子之间的分散力并与Lifshitz理论进行比较

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Interaction forces between carboxylate colloidal latex particles of about 2 μm in diameter immersed in aqueous solutions of monovalent salts were measured with the colloidal probe technique, which is based on the atomic force microscope. We have systematically varied the ionic strength, the type of salt, and also the surface charge densities of the particles through changes in the solution pH. Based on these measurements, we have accurately measured the dispersion forces acting between the particles and estimated the apparent Hamaker constant to be (2.0 ± 0.5) × 10~(?21) J at a separation distance of about 10 nm. This value is basically independent of the salt concentration and the type of salt. Good agreement with Lifshitz theory is found when roughness effects are taken into account. The combination of retardation and roughness effects reduces the value of the apparent Hamaker constant and its ionic strength dependence with respect to the case of ideally smooth surfaces.
机译:使用基于原子力显微镜的胶体探针技术测量了浸入单价盐水溶液中的直径约2μm的羧酸盐胶体胶乳颗粒之间的相互作用力。我们通过改变溶液的pH值来系统地改变离子强度,盐的类型以及颗粒的表面电荷密度。基于这些测量,我们已经精确地测量了作用在颗粒之间的分散力,并估计了在约10 nm的分离距离处的表观Hamaker常数为(2.0±0.5)×10〜(?21)J。该值基本上与盐浓度和盐类型无关。当考虑粗糙度影响时,发现与Lifshitz理论有很好的一致性。相对于理想光滑表面的情况,延迟和粗糙度影响的组合降低了表观Hamaker常数的值及其对离子强度的依赖性。

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