Li Xiaomei, Silge Simon, Saal Alexander, Kircher Gunnar, Koynov Kaloian, Berger Rüdiger, Butt Hans-Jürgen
Max Planck Institute for Polymer Research, Ackermannweg 10, 55128 Mainz, Germany.
Langmuir. 2021 Feb 2;37(4):1571-1577. doi: 10.1021/acs.langmuir.0c03226. Epub 2021 Jan 13.
Solid surfaces, in particular polymer surfaces, are able to adapt upon contact with a liquid. Adaptation results in an increase in contact angle hysteresis and influences the mobility of sliding drops on surfaces. To study adaptation and its kinetics, we synthesized a random copolymer composed of styrene and 11-25 mol% acrylic acid (PS/PAA). We measured the dynamic advancing (θ) and receding (θ) contact angles of water drops sliding down a tilted plate coated with this polymer. We measured θ ≈ 87° for velocities of the contact line <20 μm/s. At higher velocities, θ gradually increased to ∼98°. This value is similar to θ of a pure polystyrene (PS) film, which we studied for comparison. We associate the gradual increase in θ to the adaptation process to water: The presence of water leads to swelling and/or an enrichment of acid groups at the water/polymer interface. By applying the latest adaptation theory (Butt et al. 2018, 34, 11292), we estimated the time constant of this adaptation process to be ≪1 s. For sliding water drops, θ is ∼10° lower compared to the reference PS surface for all tested velocities. Thus, at the receding side of a sliding drop, the surface is already enriched by acid groups. For a water drop with a width of 5 mm, the increase in contact angle hysteresis corresponds to an increase in capillary force in the range of 45-60 μN, depending on sliding velocity.
固体表面,尤其是聚合物表面,在与液体接触时能够发生适应性变化。这种适应性变化会导致接触角滞后增加,并影响表面上滑动液滴的流动性。为了研究适应性变化及其动力学,我们合成了一种由苯乙烯和11 - 25摩尔%丙烯酸组成的无规共聚物(PS/PAA)。我们测量了水滴在涂有这种聚合物的倾斜板上滑动时的动态前进接触角(θ)和后退接触角(θ)。对于接触线速度<20μm/s的情况,我们测得θ≈87°。在更高速度下,θ逐渐增加到约98°。这个值与我们为作比较而研究的纯聚苯乙烯(PS)薄膜的θ相似。我们将θ的逐渐增加归因于对水的适应性过程:水的存在导致水/聚合物界面处酸基团的溶胀和/或富集。通过应用最新的适应性理论(Butt等人,2018年,34卷,11292页),我们估计这个适应性过程的时间常数≪1 s。对于滑动的水滴,在所有测试速度下,θ比参考PS表面低约10°。因此,在滑动液滴的后退侧,表面已经被酸基团富集。对于宽度为5mm的水滴,接触角滞后的增加对应于毛细力在45 - 60μN范围内的增加,这取决于滑动速度。