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Fabrication of superhydrophobic surfaces inspired by 'stomata effect' of plant leaves via swelling-vesiculating-cracking method

机译:通过膨胀 - 裂缝裂解法制备植物叶片“气孔效应”的超疏水表面的制备

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摘要

Fabrication of superhydrophobic surfaces by simple techniques is of significant interest. Herein, inspired by the "stomata effect" of plant leaves, a superhydrophobic surface with bionic stomata randomly on polydimethylsiloxane (PDMS) is fabricated by a facile swelling-vesiculating-cracking method. Neither multistep modification of nanostructure nor introduction of low surface energy substance is carried out during the fabrication. The water contact angle (CA) of the bio-inspired superhydrophobic surfaces with stomata-like structures (BSSS) can reach 168.4 +/- 1 degrees with 8.9 degrees sliding angle and less than 10 degrees contact angle hysteresis (CAH). The structure and wettability of the BSSS are characterized by scanning electron microscopy, Fourier transform infrared spectroscopy, energy dispersive spectrometry and X-ray photoelectron spectroscopy. The effects of swelling ratio, heat treatment temperature and surface morphology on the hydrophobicity of the BSSS are investigated systematically. Noticeably, the BSSS are provided with wonderful durability in organic solvents, ice water, and strong acid solution. Furthermore, a theoretical model for BSSS based on the Cassie-Baxter relation is established to elucidate the "stomata effect". The model reveals that the water contact angle will reach 180 degrees when the stomata-like structure is suitable. The fabrication of BSSS provides a potential strategy for the development of novel superhydrophobic materials.
机译:通过简单的技术制备超疏水表面的兴趣是显着的兴趣。这里,由植物叶的“气孔效应”的启发,通过容易溶胀 - 裂解 - 破裂方法制造随机对聚二甲基硅氧烷(PDMS)进行仿生气孔的超疏水表面。在制造期间,在制造期间既不会在纳米结构的纳米结构修改也不引入低表面能物质。具有气孔状结构(BSSS)的生物启发超细杂交表面的水接触角(CA)可以达到168.4 +/- 1度,滑动角度为8.9度,并且距离距离滞后(CAH)小于10度。 BSSS的结构和润湿性的特征在于扫描电子显微镜,傅里叶变换红外光谱,能量分散光谱和X射线光电子能谱。系统地研究了溶胀比,热处理温度和表面形态对BSSS的疏水性的影响。明显的是,BSSS在有机溶剂,冰水和强酸溶液中具有卓越的耐久性。此外,建立了基于Cassie-Baxter关系的BSSS的理论模型,以阐明“气孔效应”。该模型显示,当气孔状结构合适时,水接触角将达到180度。 BSSS的制造提供了新型超疏水材料的发育的潜在策略。

著录项

  • 来源
    《Chemical engineering journal》 |2020年第1期|共11页
  • 作者单位

    Fuzhou Univ Coll Chem Engn Fujian Key Lab Adv Mfg Technol Special Chem Fuzhou 350108 Peoples R China;

    Fuzhou Univ Coll Chem Engn Fujian Key Lab Adv Mfg Technol Special Chem Fuzhou 350108 Peoples R China;

    Fuzhou Univ Coll Chem Engn Fujian Key Lab Adv Mfg Technol Special Chem Fuzhou 350108 Peoples R China;

    Fuzhou Univ Coll Chem Engn Fujian Key Lab Adv Mfg Technol Special Chem Fuzhou 350108 Peoples R China;

    Fuzhou Univ Coll Chem Engn Fujian Key Lab Adv Mfg Technol Special Chem Fuzhou 350108 Peoples R China;

    Fuzhou Univ Coll Chem Engn Fujian Key Lab Adv Mfg Technol Special Chem Fuzhou 350108 Peoples R China;

    Fuzhou Univ Coll Chem Engn Fujian Key Lab Adv Mfg Technol Special Chem Fuzhou 350108 Peoples R China;

    Fuzhou Univ Fujian Prov Engn Res Ctr High Value Utilizat Tech Fuzhou 350108 Peoples R China;

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

    Super-hydrophobicity; Bio-inspired surface; Polydimethylsiloxane; Stomata; Loropetalum chinense var. rubrum;

    机译:超级疏水性;生物启发表面;聚二甲基硅氧烷;气孔;Loropetalum Chinense var。 鲁莽;

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