Jose Merin, Lokesh Muruga, Vaippully Rahul, Satapathy Dillip K, Roy Basudev
Department of Physics, Indian Institute of Technology Madras Chennai Tamil Nadu India 600036
RSC Adv. 2022 Apr 28;12(21):12988-12996. doi: 10.1039/d2ra00765g.
Mechanical properties of particle laden interfaces is crucial for various applications. For water droplets containing soft microgel particles, passive microrheology studies have revealed that the dynamically varying surface area of the evaporating drop results in a viscous to viscoelastic transition along the plane of the interface. However, the behaviour of the medium orthogonal to the interface has been elusive to study using passive microrheology techniques. In this work, we employ optical tweezers and birefringent probe particles to extract the direction-resolved viscoelastic properties of the particle-laden interface. By using special types of birefringent tracer particles, we detect not only the in-plane translational mode but also the out-of-plane translational (perpendicular to the interface) and rotational modes. We first compare different passive methods of probing the viscoelasticity of the microgel laden interface of sessile drop and then study the modes perpendicular to the interface and the out-of-plane rotational mode using optical tweezers based passive microrheology. The viscoelasticity of the interface using two different methods, , multiple-particle tracking passive microrheology using video microscopy and by trapping birefringent tracer particles in optical tweezers, relying on different models are studied and found to exhibit comparable trends. Interestingly, the mode orthogonal to the interface and the rotational mode also show the viscous to viscoelastic transition as the droplet evaporates, but with lesser viscoelasticity during the same evaporation time than the in-plane mode.
含颗粒界面的力学性能对各种应用至关重要。对于含有软微凝胶颗粒的水滴,被动微流变学研究表明,蒸发液滴动态变化的表面积会导致沿界面平面发生从粘性到粘弹性的转变。然而,使用被动微流变学技术研究与界面正交的介质行为却一直难以实现。在这项工作中,我们采用光镊和双折射探针颗粒来提取含颗粒界面的方向分辨粘弹性特性。通过使用特殊类型的双折射示踪颗粒,我们不仅检测到面内平移模式,还检测到面外平移(垂直于界面)和旋转模式。我们首先比较探测固着液滴微凝胶负载界面粘弹性的不同被动方法,然后使用基于光镊的被动微流变学研究垂直于界面的模式和面外旋转模式。使用两种不同方法研究界面的粘弹性,即使用视频显微镜的多颗粒跟踪被动微流变学以及通过在光镊中捕获双折射示踪颗粒,基于不同模型进行研究,发现呈现出可比的趋势。有趣的是,垂直于界面的模式和旋转模式在液滴蒸发时也显示出从粘性到粘弹性的转变,但在相同蒸发时间内,其粘弹性比面内模式小。