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The influence of surface energy on the wetting behaviour of the spore adhesive of the marine alga Ulva linza (synonym Enteromorpha linza)

机译:表面能对海藻Ulva linza(同义词Enteromorpha linza)孢子黏合剂润湿行为的影响

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摘要

The environmental scanning electron microscope has been used to image the adhesive pads secreted by zoospores of the marine alga Ulva linza as they settle on a range of self-assembled and grafted monolayers of different wettability, under natural, hydrated conditions. Results reveal that the diameter of the adhesive pad is strongly influenced by surface wettability, the adhesive spreading more (i.e. wetting the surface better) on the more hydrophilic surfaces. This is in direct contrast to previous observations on the spreading of marine bioadhesives and is in apparent contradiction to the predictions of the Young–Dupre equation for three-phase systems. In this paper, we attempt an explanation based upon thermodynamic analysis of the wetting properties of hydrophilic proteins.
机译:环境扫描电子显微镜已用于在自然,水合条件下,将海藻Ulva linza游动孢子分泌的胶粘剂成像,因为它们位于一系列具有不同润湿性的自组装和接枝单分子膜上。结果表明,粘合剂垫的直径受表面润湿性的强烈影响,粘合剂在亲水性更高的表面上散布得更多(即更好地润湿表面)。这与先前关于海洋生物胶粘剂扩散的观察结果直接形成对比,并且与三相系统的Young-Dupre方程的预测明显矛盾。在本文中,我们尝试基于热力学分析亲水性蛋白质的润湿特性进行解释。

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