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Surface chemistry-dominated underwater superoleophobic mesh with mussel-inspired zwitterionic coatings for oil/water separation and self-cleaning

机译:用贻贝启发的水下涂料的表面化学统治水下超级涂料用于油/水分离和自清洁

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摘要

Mussel-inspired surface modification has been received great attention due to the universal adhesive properties of catechols for fabrication of multifunctional coatings, especially for gluing hydrophilic polymers to fabricate underwater-superoleophobic materials utilizing in oil/water separation. Despite the extensive research carried out on this topic, the similarity and discrepancy between catecholamine and catecholic amino acid on surface modification and post functionalization have not been fully addressed yet. In this work, underwater superoleophobic surfaces have been successfully developed by a two-step dip-coating method with mussel-inspired coatings and subsequent zwitterionic sulfobetaine methacrylate (SBMA) grafting onto stainless steel meshes and used in oil/water separation. Here, dopamine and 3,4-dihydroxy-L-phenylalanine were both served as mussel-adhesives. More specifically, small molecule zwitterion rather than polyzwitterion was functionalized onto mussel-inspired coatings to minimize the effect of surface topography on surface wettability. The modified surfaces were characterized by scanning electron microscopy (SEM), atomic force microscopy (AFM), and contact angle measurements to observe the surface morphology, estimate the surface roughness, and evaluate the wettability, respectively. It showed that SBMA modified meshes with polydopamine (PDA) or poly(3,4-dihydroxy- L-phenylalanine) (PDOPA) layer possessed quite different surface roughness, while both presented excellent oil repellency in water with underwater oil contact angles of 153 degrees-160 degrees, indicating a less dependence on surface roughness. Although by using the small molecule as the hydrophilic functionalized groups, the asprepared meshes exhibited good self-cleaning and oil/water separation performance (separation efficiency 98% for hexane and 97% for soybean oil) and outstanding recyclability with 98% separation efficiency after 30 cycles. This method provides insight into different properties of polycatechols and simplifies the fabrication process through the use of small molecule zwitterion rather than zwitterionic polymer. Besides, the modified meshes also exhibited excellent stability for long-term use. The resulting underwater superoleophobicity and robust self-cleaning ability promise an ideal candidate for oil/water separation and oil contamination restriction.
机译:由于用于制备多功能涂层的儿茶酚的通用粘合性能,贻贝感受的表面改性受到了极大的关注,特别是用于粘合亲水性聚合物,以制造利用油/水分离的水下超级材料。尽管对该话题进行了广泛的研究,但在表面改性和后官能化后的儿茶酚胺和儿茶酚氨基酸之间的相似性和差异尚未得到完全解决。在这项工作中,通过两步浸涂法通过贻贝吸入的涂料和随后的两步磺基甲酸甲酯(SBMA)嫁接到不锈钢网上并用于油/水分离。这里,多巴胺和3,4-二羟基-1-苯丙氨酸均用作贻贝粘合剂。更具体地,在贻贝的涂层上官能化的小分子两性离子而不是多样化,以最小化表面形貌对表面润湿性的影响。通过扫描电子显微镜(SEM),原子力显微镜(AFM)和接触角测量来表征改性表面,以观察表面形态,估计表面粗糙度,并分别评估润湿性。结果表明,具有聚二胺(PDA)或聚(3,4-二羟基-1-苯丙氨酸)(PDOPA)层的SBMA改性网格具有相当不同的表面粗糙度,而两者均在水中呈现出优异的防油性,水下油接触角为153度-160度,表示对表面粗糙度的依赖性较少。虽然通过使用小分子作为亲水性官能化基团,但是呈载体的网格表现出良好的自清洁和油/水分离性能(分离效率,己烷的98%,豆油97%)和突出的可回收性为98% 30次循环后的分离效率。该方法提供了对多基质的不同性质的洞察力,并通过使用小分子两性离子而不是两性离子聚合物简化制造过程。此外,改性网格也表现出优异的长期使用稳定性。由此产生的水下超漏辅能力和鲁棒自清洁能力承诺提供油/水分离和油污限制的理想候选者。

著录项

  • 来源
    《Applied Surface Science》 |2019年第31期|399-408|共10页
  • 作者单位

    East China Univ Sci & Technol Key Lab Adv Mat Sch Chem & Mol Engn Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Key Lab Adv Mat Sch Chem & Mol Engn Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Key Lab Adv Mat Sch Chem & Mol Engn Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Key Lab Adv Mat Sch Chem & Mol Engn Shanghai 200237 Peoples R China;

    East China Univ Sci & Technol Key Lab Adv Mat Sch Chem & Mol Engn Shanghai 200237 Peoples R China;

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

    SBMA; PDA; PDOPA; Underwater superoleophobic; Oil/water separation; Self-cleaning;

    机译:SBMA;PDA;PDOPA;水下超级;油/水分离;自清洁;

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