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首页> 外文期刊>Plasma processes and polymers >Analysis of transport phenomena during plasma deposition of hydrophobic coatings on porous cellulosic substrates in plane‐to‐plane dielectric barrier discharges at atmospheric pressure
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Analysis of transport phenomena during plasma deposition of hydrophobic coatings on porous cellulosic substrates in plane‐to‐plane dielectric barrier discharges at atmospheric pressure

机译:在大气压下在平面到平面近电屏蔽中疏水涂层疏水涂层疏水涂层沉积过程中的运输现象分析

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In this study, four-layer stacks of bleached, unrefined Kraft papers are exposed to a plane-to-plane dielectric barrier discharge at atmospheric pressure operated in a glow-like discharge regime and sustained in a mixture of hexamethyldisiloxane and helium gases. Scanning electron microscopy confirms that the plasma-deposited coating follows the roughness of the porous cellulosic substrate. Whereas fairly spatially homogeneous coatings are obtained on silicon, significant variations of the coatings' thickness, organic content, and water contact angle are observed along the gas flow lines on the Kraft paper. These effects are even more important in the presence of substrate outgassing. In addition, plasma-generated species sequentially penetrate down to the fourth layer of the cellulosic substrate, rendering surfaces hydrophobic with very low water absorption kinetics.
机译:在该研究中,四层漂白的未精制的牛皮纸纸暴露于平面到平面介电阻挡放电,以在类似于发光的放电状态下操作,并以六甲基二硅氧烷和氦气的混合物持续。扫描电子显微镜证实等离子体沉积的涂层遵循多孔纤维素基材的粗糙度。然而,在硅上获得相当空间均匀的涂层,而沿牛皮纸上的气体流动线观察涂层厚度,有机含量和水接触角的显着变化。这些效果在存在底物除气中更重要。另外,等离子体产生的物种依次渗透到纤维素基材的第四层,呈现疏水性,具有非常低的吸水性动力学。

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