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聚环氧乙烷分子量对蒸发固着液滴钉扎和柱体形成的影响:界面的作用

Effect of Poly(ethylene oxide) Molecular Weight on the Pinning and Pillar Formation of Evaporating Sessile Droplets: The Role of the Interface.

作者信息

Mamalis Dimitrios, Koutsos Vasileios, Sefiane Khellil, Kagkoura Antonia, Kalloudis Michail, Shanahan Martin E R

机构信息

†Institute for Materials and Processes, School of Engineering, The University of Edinburgh, King's Buildings, Edinburgh EH9 3FB, United Kingdom.

⊥International Institute for Carbon-Neutral Energy Research (I2CNER) and Department of Mechanical Engineering, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.

出版信息

Langmuir. 2015 Jun 2;31(21):5908-18. doi: 10.1021/la504905y. Epub 2015 May 18.

Abstract

We report on the drying process of sessile droplets of aqueous poly(ethylene oxide) (PEO) solutions studied by contact angle analysis. Liquid samples were prepared with the same initial concentration of four different molecular weights, Mw, of PEO. Droplets with initial volumes of between 1 and 5 μL were left to evaporate while temperature, pressure, and relative humidity were kept constant. Residues were formed with either a disklike puddle or a distinctive tall conical pillar shape. The latter occurred following a four-stage deposition process: pinned drying, during which the contact line is stationary; pseudodewetting, where the receding contact line is induced by precipitation; bootstrap building, during which the liquid droplet is lifted on freshly precipitated solid; and late drying. Contact angle analysis allowed us to monitor all stages during drying and consider transitions between stages for different molecular weights. We illustrate the mechanisms taking place during the crucial stages of pinning and depinning, revealing the effect of adhesion and contact line friction for high molecular weights and its influence on the final morphology of the dried PEO solute. To this end, we performed PEO solution droplet evaporation on PEO and PTFE films demonstrating the importance of interfacial interaction phenomena. We show that the formation of disklike puddles for high molecular weights on glass is associated with continuous droplet contact line pinning. This results from the strong adhesion due to the interdigitation of the loops and tails of a polymer layer (adsorbed on glass during evaporation) with the polymer gel network inside the droplet that forms as water evaporates.

摘要

我们报道了通过接触角分析研究的聚环氧乙烷(PEO)水溶液 sessile 液滴的干燥过程。制备了具有相同初始浓度的四种不同分子量(Mw)的PEO液体样品。将初始体积在1至5μL之间的液滴在温度、压力和相对湿度保持恒定的情况下使其蒸发。残留物形成盘状水坑或独特的高锥形柱形状。后者遵循一个四阶段沉积过程:固定干燥,在此期间接触线是固定的;假去湿,其中后退接触线由沉淀引起;自举构建,在此期间液滴在新沉淀的固体上被抬起;以及后期干燥。接触角分析使我们能够监测干燥过程中的所有阶段,并考虑不同分子量在各阶段之间的转变。我们阐述了固定和去固定关键阶段发生的机制,揭示了高分子量下粘附力和接触线摩擦力的影响及其对干燥的PEO溶质最终形态的影响。为此,我们在PEO和聚四氟乙烯(PTFE)薄膜上进行了PEO溶液液滴蒸发,证明了界面相互作用现象的重要性。我们表明,高分子量在玻璃上形成盘状水坑与液滴接触线的持续固定有关。这是由于在蒸发过程中吸附在玻璃上的聚合物层的环和尾部与随着水蒸发在液滴内部形成的聚合物凝胶网络相互交错而产生的强粘附力所致。

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