Garcia Léo, Barraud Chloé, Picard Cyril, Giraud Jérôme, Charlaix Elisabeth, Cross Benjamin
CNRS, LIPhy, Université Grenoble Alpes, 38041 Grenoble Cedex 9, France.
Rev Sci Instrum. 2016 Nov;87(11):113906. doi: 10.1063/1.4967713.
We present a nano-rheometer based on the dynamic drainage flow between a sphere and a plane from bulk regime to highly confined regime. The instrument gives absolute measurements of the viscosity of simple liquids in both regimes. For complex fluids, the measurements involve the viscosity and the elastic modulus. The device operates on distances ranging over four orders of magnitude from 1 nm to 10 μm, bridging rheological properties from the macroscopic to the molecular scale. This allows to measure an hydrodynamic or visco-elastic boundary condition and to explore the causes of the boundary condition at the microscopic level.
我们展示了一种基于球体与平面之间动态排水流动的纳米流变仪,其可从本体状态转变为高度受限状态。该仪器能对两种状态下的简单液体粘度进行绝对测量。对于复杂流体,测量涉及粘度和弹性模量。该装置的工作距离范围跨越四个数量级,从1纳米到10微米,弥合了从宏观到分子尺度的流变学特性。这使得能够测量流体动力学或粘弹性边界条件,并在微观层面探究边界条件的成因。