论文标题
在广泛频率范围内的软凝胶的非接触性流变学
Contactless Rheology of Soft Gels over a Broad Frequency Range
论文作者
论文摘要
我们报告了软凝胶的粘弹性流变特性的无接触式测量。实验是在液体环境和动态模式下使用胶体探针原子力显微镜(AFM)进行的。在不同振荡频率的液体间隙厚度的函数中测量了机械响应。我们的测量结果揭示了由探针振荡与凝胶的粘弹性变形引起的流动之间的弹性水力动力学(EHD)耦合。数据是通过粘弹性润滑模型定量描述的。聚二甲基硅氧烷(PDMS)凝胶的频率依赖性存储和损耗模量是从数据的拟合中提取的,并且与底盘 - 三位法律非常吻合。我们的结果表明,非接触式胶体探针方法是强大的工具,可用于在频率范围的频率上探测软接口。
We report contactless measurements of the viscoelastic rheological properties of soft gels. The experiments are performed using a colloidal-probe Atomic Force Microscope (AFM) in a liquid environment and in dynamic mode. The mechanical response is measured as a function of the liquid gap thickness for different oscillation frequencies. Our measurements reveal an elastohydrodynamic (EHD) coupling between the flow induced by the probe oscillation and the viscoelastic deformation of the gels. The data are quantitatively described by a viscoelastic lubrication model. The frequency-dependent storage and loss moduli of the polydimethylsiloxane (PDMS) gels are extracted from fits of the data to the model and are in good agreement with the Chasset--Thirion law. Our results demonstrate that contactless colloidal-probe methods are powerful tools that can be used for probing soft interfaces finely over a wide range of frequencies.