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首页> 外文期刊>RSC Advances >Facile fabrication of multifunctional fabrics: use of copper and silver nanoparticles for antibacterial, superhydrophobic, conductive fabrics
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Facile fabrication of multifunctional fabrics: use of copper and silver nanoparticles for antibacterial, superhydrophobic, conductive fabrics

机译:容易制作多功能织物:使用铜和银纳米粒子用于抗菌,超疏水,导电织物

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摘要

This study aims to develop a multifunctional fabric for antibacterial, superhydrophobic and conductive performance using a facile fabrication method. Conductive metal particles, copper and silver, were used as antibacterial agents as well as a means to create nanoscale roughness on the fabric surface. Subsequent hydrophobic coating with 1-dodecanethiol produced a superhydrophobic surface. The single metal treatment with Cu or Ag, and the combined metal treatment of Cu/Ag were compared for the multifunctionality. The Cu/Ag treated fabric and the Cu treated fabric showed a bacteriostatic rate 99% and a sterilization rate 99% against S. aureus, suggesting a higher antibacterial activity against the Gram-positive bacteria. In contrast, the Ag treated fabric showed a lower antibacterial effect regardless of the bacteria type. With regards to conductivity, the single metal treated fabric did not exhibit conductivity; however the Cu/Ag treated fabric showed a high level conductivity with a surface resistivity of 25.17 +/- 8.18 sq(-1) and 184.38 +/- 85.42 sq(-1) before and after hydrophobic coating, respectively. Fabrics treated with Cu and Cu/Ag particles (with hydrophobic coating) displayed superhydrophobic characteristics with the contact angle of 161-162 degrees and the shedding angle of 7.0-7.8 degrees. The air permeability decreased after the particle treatment as the particles blocked the pores in the fabric. However, the water vapor permeability and tensile strength were not significantly affected by the particle treatment. This study is significant in that a multifunctionality of antibacterial effect, superhydrophobicity, and conductivity was achieved through the facile processes for metal nanoparticle attachment and hydrophobic coating. The multifunctional fabrics produced in this study can be practically applied to self-cleaning smart clothing, which has reduced laundering need, without hygiene concerns.
机译:本研究旨在使用容器制造方法开发用于抗菌,超疏水和导电性能的多功能织物。导电金属颗粒,铜和银,用作抗菌剂以及在织物表面上产生纳米级粗糙度的手段。随后用1-十二烷硫醇产生过疏水表面的后续疏水涂层。与Cu或Ag的单金属处理和Cu / Ag的合并金属处理进行了多官能。 Cu / Ag处理的织物和Cu处理的织物显示出抑菌率99%和灭菌率为99%,针对金黄色葡萄球菌,表明对革兰氏阳性细菌的抗菌活性较高。相反,无论细菌类型如何,AG处理的织物都显示出较低的抗菌作用。关于电导率,单一金属处理的织物没有表现出导电性;然而,Cu / Ag处理的织物分别在疏水涂层之前和之后的具有25.17 +/- 8.18平方米和184.38 +/- 85.42 Sq(-1)的表面电阻率的高水平导电性。用Cu和Cu / Ag颗粒(具有疏水涂层)处理的织物显示过疏水特性,接触角为161-162度,脱落角为7.0-7.8度。颗粒处理后透气性降低,因为颗粒阻断织物中的孔隙。然而,通过颗粒处理不会显着影响水蒸气渗透性和拉伸强度。该研究在通过用于金属纳米颗粒附着和疏水涂层的容量工艺来实现抗菌效果,超水细胞性和电导率的多官能性。本研究中生产的多功能织物实际上可以应用于自清洗的智能衣服,这使得洗涤需要降低,而无需卫生的担忧。

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  • 来源
    《RSC Advances》 |2018年第73期|共13页
  • 作者单位

    Seoul Natl Univ Dept Text Merchandising &

    Fash Design Seoul 08826 South Korea;

    Seoul Natl Univ Dept Text Merchandising &

    Fash Design Seoul 08826 South Korea;

    Seoul Natl Univ Dept Text Merchandising &

    Fash Design Seoul 08826 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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