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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Droplet Transport in a Nanochannel Coated by Hydrophobic Semiflexible Polymer Brushes: The Effect of Chain Stiffness
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Droplet Transport in a Nanochannel Coated by Hydrophobic Semiflexible Polymer Brushes: The Effect of Chain Stiffness

机译:通过疏水性半霜聚合物刷涂的纳米烷基中的液滴输送:链刚度的效果

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src="http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/langd5/2017/langd5.2017.33.issue-40/acs.langmuir.7b02640/20171004/images/medium/la-2017-02640u_0012.gif">We study the influence of chain stiffness on droplet flow in a nanochannel, coated with semiflexible hydrophobic polymers by means of nonequilibrium molecular dynamics simulations. The studied system is then a moving droplet in the slit channel, coexisting with its vapor and subjected to periodic boundary conditions in the flow direction. The polymer chains, grafted by the terminal bead to the confining walls, are described by a coarse-grained model that accounts for chain connectivity, excluded volume interactions and local chain stiffness. The rheological, frictional and dynamical properties of the brush are explored over a wide range of persistence lengths. We find a rich behavior of polymer conformations and concomitant changes in the friction properties over the wide range of studied polymer stiffnesses. A rapid decrease in the droplet velocity was observed as the rigidity of the chains is increased for polymers whose persistence length is smaller than their contour length. We find a strong relation between the internal dynamics of the brush and the droplet transport properties, which could be used to tailor flow properties by surface functionalization. The monomers of the brush layer, under the droplet, present a collective “treadmill belt” like dynamics which can only be present due the existence of grafted chains. We describe its changes in spatial extension upon variations of polymer stiffness, with bidimensional velocity and density profiles. The deformation of the polymer brushes due to the presence of the droplet is analyzed in detail. Lastly, the droplet–gas interaction is studied by varying the liquid to gas ratio, observing a 16% speed increase for droplets that flow close to each other, compared to a train of droplets that present a large gap between consecutive droplets.
机译:We研究链刚度对液滴流的影响在纳米通道,通过非平衡分子动力学模拟的装置涂有半软质的疏水性聚合物。所研究的系统是在随后的狭缝通道的运动的液滴,以其蒸气共存并进行在流动方向上周期性边界条件。聚合物链,由终端珠到围壁接枝,是由占链连接,排除体积相互作用和本地链刚度的粗粒度模型中描述。刷子的流变,摩擦和动力学性质进行了探索在宽范围的持久长度的。我们发现聚合物构象和在大范围内研究聚合物刚度的摩擦特性伴随变化的丰富的行为。未观察到液滴速度的快速减退作为链的刚性对于其持续长度大于它们的轮廓长度小的聚合物增加。我们发现刷的内在动力和液滴输运性质,这可能是表面官能用来裁缝流动性之间有很强的关系。刷层的单体,液滴下,呈现出集体“跑步机带”之类的动态这只能是目前由于接枝链的存在。我们描述其在当聚合物刚度的变化的空间延伸,以二维速度和密度分布中的变化。的聚合物刷由于液滴的存在的变形进行了详细分析。最后,微滴气体相互作用是通过改变液气比,观察该流彼此接近液滴的速度增加了16%,相比于连续呈现液滴之间有很大的差距的液滴的列车研究。

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