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Surface hydrophobicity of slippery zones in the pitchers of two Nepenthes species and a hybrid

机译:两种猪笼草和杂种猪笼草的湿滑区的表面疏水性

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To investigate the hydrophobicity of slippery zones, static contact angle measurement and microstructure observation of slippery surfaces from two Nepenthes species and a hybrid were conducted. Marginally different static contact angles were observed, as the smallest (133.83°) and greatest (143.63°) values were recorded for the N. alata and N. miranda respectively, and the median value (140.40°) was presented for the N. khasiana . The slippery zones under investigation exhibited rather similar surface morphologies, but different structural dimensions. These findings probably suggest that the geometrical dimensions of surface architecture exert primary effects on differences in the hydrophobicity of the slippery zone. Based on the Wenzel and Cassie-Baxter equations, models were proposed to analyze the manner in which geometrical dimensions affect the hydrophobicity of the slippery surfaces. The results of our analysis demonstrated that the different structural dimensions of lunate cells and wax platelets make the slippery zones present different real area of the rough surface and thereby generate somewhat distinguishable hydrophobicity. The results support a supplementary interpretation of surface hydrophobicity in plant leaves, and provide a theoretical foundation for developing bioinspired materials with hydrophobic properties and self-cleaning abilities.
机译:为了研究湿滑区的疏水性,进行了两种猪笼草和杂种的静态接触角测量和湿润表面的微观结构观察。观察到最小的静态接触角,分别记录了阿拉斯猪笼草和米兰达猪笼草的最小接触角(133.83°)和最大值(143.63°),哈萨那猪笼草的中间值(140.40°)呈现。研究中的湿滑带表现出相当相似的表面形态,但结构尺寸不同。这些发现可能表明表面结构的几何尺寸对湿滑区的疏水性差异起主要作用。基于Wenzel和Cassie-Baxter方程,提出了模型来分析几何尺寸影响光滑表面疏水性的方式。我们的分析结果表明,发光细胞和蜡状血小板的不同结构尺寸使光滑区域呈现出粗糙表面的不同实际面积,从而产生一定程度的可区分疏水性。结果支持对植物叶片表面疏水性的补充解释,并为开发具有疏水性和自清洁能力的生物启发材料提供理论基础。

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