Center for Soft and Living Matter, Institute for Basic Science, 44919 Ulsan, Republic of Korea.
Center for Soft and Living Matter, Institute for Basic Science, 44919 Ulsan, Republic of Korea
Proc Natl Acad Sci U S A. 2019 Aug 13;116(33):16256-16261. doi: 10.1073/pnas.1900623116. Epub 2019 Jul 31.
Complex liquids flow through channels faster than expected, an effect attributed to the formation of low-viscosity depletion layers at the boundaries. Characterization of depletion layer length scale, concentration, and dynamics has remained elusive due in large part to the lack of suitable real-space experimental techniques. The short length scales associated with depletion layers have traditionally prohibited direct imaging. By overcoming this limitation via adaptations of stimulated emission depletion (STED) microscopy, we directly measure the concentration profile of polymer solutions at a nonadsorbing wall under Poiseuille flow. Using this approach, we 1) confirm the theoretically predicted concentration profile governed by entropically driven depletion, 2) observe depletion layer narrowing at low to intermediate shear rates, and 3) report depletion layer composition that approaches pure solvent at unexpectedly low shear rates.
复杂液体在通道中的流动速度快于预期,这一效应归因于在边界处形成低粘度耗尽层。由于缺乏合适的实空间实验技术,耗尽层长度尺度、浓度和动力学特性的描述一直难以捉摸。与耗尽层相关的短长度尺度传统上禁止直接成像。通过对受激发射损耗(STED)显微镜的适应性改造克服了这一限制,我们直接测量了在泊肃叶流下非吸附壁处聚合物溶液的浓度分布。通过这种方法,我们 1)证实了由熵驱动的耗尽所控制的理论预测的浓度分布,2)观察到在低到中等剪切速率下耗尽层变窄,3)报告了在出人意料低的剪切速率下接近纯溶剂的耗尽层组成。