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首页> 外文期刊>ACS applied materials & interfaces >Confined Growth and Controlled Coalescence/Self-Removal of Condensate Microdrops on a Spatially Heterogeneously Patterned Superhydrophilic-Superhydrophobic Surface
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Confined Growth and Controlled Coalescence/Self-Removal of Condensate Microdrops on a Spatially Heterogeneously Patterned Superhydrophilic-Superhydrophobic Surface

机译:狭窄的生长和控制聚结/自除凝结物微量折叠在空间异质图案化的超烯烃 - 超疏水表面上

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摘要

Manipulating condensate nucleation, growth, coalescence, and self-removal via bionic super-wettability surfaces has attracted intensive interest because of their significance in fundamental research and technological innovations, for example, water harvesting, power generation, air conditioning, and thermal management. However, it is still a challenge to simultaneously realize confined growth, coalescence, and self-ejection of condensate microdrops, which has not been reported to date. Here, we propose and demonstrate a type of new and more efficient coalescence/self-removal method based on spatially confined growth/coalescence/self-ejection of condensate microdrops, which can be realized using a rationally designed superhydrophobic surface with spatially heterogeneously patterned superhydrophilic microdots (SMDs). Exemplified by superhydrophobic closely packed zinc oxide nanoneedles with SMD patterns, we investigate how the geometric parameters of SMD patterns be designed to simultaneously realize the spatially confined growth/coalescence/self-ejection of patterned microdrops, which are rationalized via theoretical analyses.
机译:通过仿生超润湿性表面操纵缩合含量成核,生长,聚结,以及自去除,由于它们对基本研究和技术创新的意义,因此具有重要利益,例如水收集,发电,空调和热管理。然而,同时意识到狭窄的生长,聚结和自掏缩缩合物微量术的自来仍然是一项挑战,尚未涉及到迄今为止尚未报告。在这里,我们提出并展示了一种基于空间狭窄的生长/共移/自喷射的新的和更高效的聚结/自除射精的缩合微量折射,这可以使用具有具有空间异质地图案化的超硫酸的合理设计的超疏水表面来实现(SMDS)。通过SMD图案的超疏水性紧密封装的氧化锌纳尼,我们研究了SMD图案的几何参数如何设计成同时实现图案化微量术的空间狭窄的生长/共射/自喷射,这通过理论分析是合理的。

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