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CO2 wetting on pillar-nanostructured substrates

机译:支柱 - 纳米结构基板上的CO2润湿

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摘要

CO2 capture by dropwise CO2 condensation on cold solid surfaces is a promising technology. Understanding the role of the nanoscale surface and topographical features of CO2 droplet wetting characteristics is of importance for CO2 capture by this technology, but this remains unexplored as of yet. Here, using large-scale molecular dynamics (MD) simulations, the contact angle and wetting behaviors of CO2 droplets on pillar-structured Cu-like surfaces are investigated for the first time. Dynamic wetting simulations show that, by changing the strength of the solid-liquid attraction epsilon(Cu-CO2), a smooth Cu-like surface offers a transition from CO2-philic to CO2-phobic. By periodically pillared roughening of the Cu-like surfaces, however, a higher contact angle and a smaller spreading exponent of a liquid CO2 droplet are realized. Particularly, a critical crossover of CO2-philic to CO2-phobic can appear. The wetting of the pillared surfaces by a liquid CO2 droplet proceeds non-uniformly. A liquid CO2 droplet is capable of exhibiting a transition from the Cassie state to the Wenzel state with increasing epsilon(Cu-CO2), increasing inter-pillar distance, and increasing pillar width. The wetting morphologies of the metastable Wenzel state of a CO2 droplet are very different from each other. The findings will inform the ongoing design of CO2-phobic solid surfaces for practical dropwise condensation-based CO2 capture applications.
机译:CO 2通过逐滴捕获冷固体表面上的CO 2缩合是一个有前途的技术。了解纳米级表面和CO2液滴润湿特性的地形特征的作用对于CO2通过该技术的重要性是重要的,但这仍然是未探究的。这里,使用大规模分子动力学(MD)模拟,首次研究了支柱结构Cu样表面上的CO2液滴的接触角和润湿行为。动态润湿模拟表明,通过改变固液吸引ε(Cu-CO2)的强度,光滑的Cu样表面提供从Co2-Philic到Co2-Phobic的过渡。然而,通过定期柱状粗粗糙化,然而,实现了较高的接触角和液体CO2液滴的较小扩散指数。特别是,可以出现CO 2-Phobic的临界交叉可以出现。通过液体CO2液滴润湿柱状表面不均匀。液体CO2液滴能够随着增加的ε(Cu-CO 2),增加柱距离,增加柱距离,并且增加柱宽度,液体CO2液滴能够从Cassie状态到Wenzel状态。二氧化碳液滴的润湿形态彼此非常不同。该研究结果将向正在进行的基于脱滴缩合的CO2捕获应用提供CO2-磷酸固体表面的持续设计。

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