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首页> 外文期刊>Wood Science and Technology >Improved water repellency of black spruce wood surfaces after treatment in carbon tetrafluoride plasmas
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Improved water repellency of black spruce wood surfaces after treatment in carbon tetrafluoride plasmas

机译:在四氟化碳等离子体中处理后,改善了黑云杉木材表面的防水性

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摘要

Plasma treatments for black spruce wood (Picea mariana (Mill.) B.S.P.), a widespread forest species from Canada, were carried out in order to waterproof the exposed surfaces. Experiments were performed using inductively coupled argon plasma with carbon tetrafluoride as the gaseous precursor for plasma-enhanced chemical vapor deposition of functional fluoropolymer coatings on wood. Analysis of the wettability through water contact angle measurements showed water-repellent characteristics, with static contact angles up to 130° depending on plasma exposure time, CF_4 concentration in the Ar/CF_4 plasma, and plasma source-to-substrate distance. X-ray photoelectron spectroscopy investigations of plasma-treated wood surfaces confirmed the growth of a thin, fluorocarbon layer with fluorine atomic concentrations close to 50 % on highly hydrophobic wood surfaces. Estimation of the thickness of the coatings by stylus profilometry revealed that a minimum layer thickness of about 80 nm is required to obtain water repellant wood surfaces with minimum water uptake. This complete set of data indicates that fluorocarbon-containing plasmas represent a very promising approach for improving the durability of wood products in wet and humid conditions.
机译:为了对裸露的表面进行防水处理,对黑云杉木材(Picea mariana(Mill。)B.S.P.)进行了等离子处理,这是一种来自加拿大的广泛森林种。实验是使用感应耦合氩等离子体和四氟化碳作为气态前体进行的,用于在木材上进行等离子体增强的功能性含氟聚合物涂层的化学气相沉积。通过水接触角测量进行的可湿性分析显示出憎水特性,其静态接触角高达130°,具体取决于等离子体暴露时间,Ar / CF_4等离子体中CF_4的浓度以及等离子体源到基质的距离。对经过等离子体处理的木材表面的X射线光电子能谱研究证实,在高度疏水的木材表面上,氟原子浓度接近50%的碳氟化合物薄层的生长。通过触针轮廓测定法估计涂层的厚度表明,需要最小的层厚度为约80 nm才能获得具有最小吸水率的防水木材表面。这套完整的数据表明,含碳氟化合物的等离子体代表了一种非常有希望的方法,可以提高木材产品在潮湿环境中的耐久性。

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  • 来源
    《Wood Science and Technology》 |2013年第2期|411-422|共12页
  • 作者单位

    Centre de Recherche sur le Bois, Pavilion G.-H. Kruger, Universite Laval, Quebec, QC G1V 0A6, Canada;

    Centre de Recherche sur le Bois, Pavilion G.-H. Kruger, Universite Laval, Quebec, QC G1V 0A6, Canada;

    FPInnovations, 319 rue Franquet, Quebec, QC G1P 4R4, Canada;

    FPInnovations, 319 rue Franquet, Quebec, QC G1P 4R4, Canada;

    Departement de Physique, Universite de Montreal, Montreal, QC H3C 3J7, Canada;

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