超薄膜动力学:Langmuir单层膜的粒子跟踪微流变学

L. J. Bonales, Hernán Ritacco, J. E. F. Rubio, R. Rubio, F. Monroy, F. Ortega
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引用次数: 18

摘要

粒子跟踪已被证明是测量流感病毒体积和界面流变学的一种强有力的技术。在界面处捕获的微粒子的布朗运动对亚相的粘度和粒子的接触角非常敏感。如果把摩擦因素适当地考虑到计算中,则满足斯托克斯-爱因斯坦关系。利用表面活性剂单分子膜上乳胶微粒的扩散系数,可以用Danov理论计算单分子膜的剪切粘度。与先前的结果很好地一致发现单层的五酸。该方法也被用于研究正十二醇的单层结构。此外,用颗粒跟踪法计算了聚合物单层的剪切粘度,结果与通道粘度法的计算结果吻合较好。剪切粘度的温度依赖性表明,聚4-羟基苯乙烯单层存在玻璃化转变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics in Ultrathin Films: Particle Tracking Microrheology of Langmuir Monolayers
Particle tracking has been shown to be a powerful technique for measuring bulk and interfacial rheology of flu- ids. The Brownian motion of microparticles trapped at interfaces is very sensitive to the viscosity of the subphase, and to the contact angle of the particles. The Stokes-Einstein relation is fulfilled if the friction factor is properly taken into ac- count. The diffusion coefficient of the latex microparticles spread on surfactant monolayers allows one to calculate the shear viscosity of the monolayer using Danov's theory. Good agreement was found with previous results for monolayers of pentadecanoic acid. The method has also been used to study monolayers of n-dodecanol. Moreover, the shear viscosity of a polymer monolayer has been calculated by particle tracking, and the results show good agreement with data obtained by canal viscosimetry. The temperature dependence of the shear viscosity shows the existence of a glass transition for monolayers of poly(4-hydroxystyrene).
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