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控制和表征含有微粒和盐的聚合物液滴的沉积物。

Controlling and characterising the deposits from polymer droplets containing microparticles and salt.

作者信息

Msambwa Y, Shackleford A S D, Ouali F F, Fairhurst D J

机构信息

Nottingham Trent University, Clifton Lane, NG11 8NS, Nottingham, UK.

出版信息

Eur Phys J E Soft Matter. 2016 Feb;39(2):21. doi: 10.1140/epje/i2016-16021-x. Epub 2016 Feb 26.

DOI:10.1140/epje/i2016-16021-x
PMID:26920524
Abstract

A coffee ring-stain is left behind when droplets containing a wide range of different suspended particles evaporate, caused by a pinned contact line generating a strong outwards capillary flow. Conversely, in the very peculiar case of evaporating droplets of poly(ethylene oxide) solutions, tall pillars are deposited in the centre of the droplet following a boot-strapping process in which the contact line recedes quickly, driven by a constricting collar of polymer crystallisation: no other polymer has been reported to produce these central pillars. Here we map out the phase behaviour seen when the specific pillar-forming polymer is combined with spherical microparticles, illustrating a range of final deposit shapes, including the standard particle ring-stain, polymer pillars and also flat deposits. The topologies of the deposits are measured using profile images and stylus profilometery, and characterised using the skewness of the profile as a simple analytic method for quantifying the shapes: pillars produce positive skew, flat deposits have zero skew and ring-stains have a negative value. We also demonstrate that pillar formation is even more effectively disrupted using potassium sulphate salt solutions, which change the water from a good solvent to a theta-point solvent, consequently reducing the size and configuration of the polymer coils. This inhibits polymer crystallisation, interfering with the bootstrap process and ultimately prevents pillars from forming. Again, the deposit shapes are quantified using the skew parameter.

摘要

当含有各种不同悬浮颗粒的液滴蒸发时,会留下咖啡环污渍,这是由固定的接触线产生强烈的向外毛细管流导致的。相反,在聚环氧乙烷溶液液滴蒸发这种非常特殊的情况下,在液滴中心会通过一种自举过程沉积出高柱状物,在此过程中接触线迅速后退,这是由聚合物结晶形成的收缩环驱动的:据报道,没有其他聚合物会产生这些中心柱状物。在这里,我们描绘了将特定的柱状物形成聚合物与球形微粒结合时所观察到的相行为,展示了一系列最终的沉积形状,包括标准的颗粒环污渍、聚合物柱状物以及扁平沉积物。使用轮廓图像和触针轮廓仪测量沉积物的拓扑结构,并使用轮廓的偏度作为量化形状的一种简单分析方法来对其进行表征:柱状物产生正偏度,扁平沉积物的偏度为零,而环污渍具有负值。我们还证明,使用硫酸钾盐溶液能更有效地破坏柱状物的形成,硫酸钾盐溶液会将水从良溶剂转变为θ点溶剂,从而减小聚合物线圈的尺寸和构型。这会抑制聚合物结晶,干扰自举过程,并最终阻止柱状物形成。同样,使用偏度参数对沉积形状进行量化。

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本文引用的文献

1
Salt stains from evaporating droplets.蒸发液滴产生的盐渍。
Sci Rep. 2015 May 27;5:10335. doi: 10.1038/srep10335.
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Classifying dynamic contact line modes in drying drops.干燥液滴中动态接触线模式的分类
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Patterns from drying drops.干燥液滴的图案。
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Capillary force repels coffee-ring effect.毛细作用力可抑制咖啡环效应。
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Phys Chem Chem Phys. 2010 Apr 28;12(16):3998-4004. doi: 10.1039/b922727j. Epub 2010 Mar 3.
10
Minimal size of coffee ring structure.咖啡环结构的最小尺寸。
J Phys Chem B. 2010 Apr 29;114(16):5269-74. doi: 10.1021/jp912190v.