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Nature’s design for superhydrophobicity in tropical leaves

机译:大自然对热带树叶超疏水性的​​设计

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摘要

Water repellency, exemplified in nature, has fascinated the materials community. This behaviour is utilised to biomimic self-cleaning effects for technological applications. Tropical leaves of three species, namely Moringa oleifera, Euphorbia milii and Caesalpinia ferrea, are investigated in this study. Wettability measurements show that C. ferrea leaf was superhydrophobic with a contact angle greater than 150°, while the other two leaves were hydrophobic with contact angles greater than 140° but less than 150°. Surface morphological studies reveal a structure with irregular wax structures on all the three leaves, unlike the regular wax structures such as tubules or platelets typically observed in most of the superhydrophobic leaves. The surface features were quantified on C. ferrea leaf surface due to its reduced wettability among the three leaves. The parameters such as height, mid-width, and radius of curvature of the cell and thickness of the wax film were determined. This study will possibly provide a new insight into developing self-cleaning surfaces with irregular nanostructures as opposed to conventional regular nanostructure patterns.
机译:疏水性,自然界中的典范,使材料界着迷。此行为可用于仿生技术应用中的自清洁效果。本研究对辣木,大戟大戟和Caesalpinia ferrea这三种物种的热带叶片进行了研究。润湿性测量表明,C。ferrea叶片是超疏水的,接触角大于150°,而其他两片叶片则是疏水的,接触角大于140°但小于150°。表面形态学研究揭示了在所有三片叶子上均具有不规则蜡结构的结构,这与大多数超疏水性叶子中通常观察到的规则蜡结构(例如小管或血小板)不同。由于其在三片叶子中的可湿性降低,因此在C. ferrea叶表面定量了表面特征。确定诸如高度,中间宽度和单元的曲率半径以及蜡膜厚度的参数。这项研究可能会为开发具有常规纳米结构图案的不规则纳米结构的自清洁表面提供新的见解。

著录项

  • 来源
    《Green Materials》 |2015年第3期|144-150|共7页
  • 作者单位

    Research Scholar, Materials Processing Section, Department of Metallurgical and Materials Engineering, Indian Institute of Technology Madras (IIT-Madras), Chennai, India;

    Postdoctoral Researcher, Department of Interface Chemistry and Surface Engineering, Max Planck Institut für Eisenforschung, Düsseldorf, Germany;

    Associate Professor, Materials Processing Section, Department of Metallurgical and Materials Engineering, Indian Institute of Technology Madras (IIT-Madras), Chennai, India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    contact angle; superhydrophobicity; surface characterisation;

    机译:接触角超疏水性表面表征;

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