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首页> 外文期刊>Nanoscale >Contrasting water adhesion strengths of hydrophobic surfaces engraved with hierarchical grooves: lotus leaf and rose petal effects
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Contrasting water adhesion strengths of hydrophobic surfaces engraved with hierarchical grooves: lotus leaf and rose petal effects

机译:对比水粘连的优势疏水表面刻有层次槽:荷叶和玫瑰花瓣的效果

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摘要

The (de) wetting transitions of hierarchical grooves periodically engraved on a hydrophobic surface were investigated using a fully atomistic molecular dynamics simulation. The (meta) stable and transition states with sagging or depinning liquid surfaces were identified by calculating the free energy profiles of the (de) wetting transitions. The dewetting transitions for wide and narrow minor grooves have large and small activation free energies, respectively, exhibiting contrasting water adhesion forces as found for rose petals and lotus leaves.
机译:(德)润湿层次的转换凹槽定期刻在一个疏水表面使用完全原子论的研究分子动力学模拟。并与下垂或depinning过渡状态液体表面被计算确定的自由能配置文件(de)润湿转换。和狭窄的小凹槽有大型和小型分别活化自由能,表现出对比水粘附力发现玫瑰花瓣和荷叶。

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