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Characterization and performance of coupled atmospheric pressure argon plasma jet with n-hexane electrospray for hydrophobic layer coatings on cotton textile

机译:棉纺织上疏水层涂层耦合大气压氩等离子体射流耦合大气压氩等离子体射流的表征及性能

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摘要

In this study, we developed an apparatus by combining n-hexane electrospray and atmospheric pressure argon plasma jet for deposition diamond like carbon (DLC) layer as a hydrophobic film on cotton textile. n-Hexane was used as a hydrocarbon precursor for preparing ionized spray for atmospheric pressure plasma (APP) jet. In order to characterize the plasma, electrical measurement and optical emission spectroscopy (OES) were employed. The electron excitation temperature of the APP was estimated by Boltzmann plot method. Water contact angle (WCA) measurement was used to evaluate the hydrophobicity of the samples. The results showed that the water contact angle of these samples increases after treating by a combination of n-hexane electrospray and the APP jet. Considerations of aging effect on the samples clarified that the samples coated with longer times show better withstand against aging effect. Washing durability investigation of the samples showed that the hydrophobic property of the samples has acceptable durability in 50 washing cycles. Formation of diamond like carbon (DLC) coating on the substrates was proved by Raman and X-ray photoelectron spectroscopy (XPS) then characterized by FE-SEM analysis, energy dispersive spectroscopy (EDX) and X-Map probe. The results of this work were compared to the original one whose liquid precursor was ethanol. It was concluded that n-hexane precursor could result in better hydrophobicity comparing with that of ethanol precursor.
机译:在这项研究中,我们通过将N-己烷电喷雾和大气压氩气等离子体射流组合用于沉积金刚石(DLC)层作为棉纺织品上的疏水薄膜来开发一种装置。将正己烷用作烃前体,用于制备大气压等离子体(APP)射流的电离喷雾。为了表征等离子体,采用电测量和光发射光谱(OES)。通过Boltzmann Plot方法估算了应用的电子激发温度。水接触角(WCA)测量用于评估样品的疏水性。结果表明,通过N-己烷电喷雾和APP射流的组合处理,这些样品的水接触角增加。对样品的衰老效应的考虑阐明了涂覆较长时间的样品显示出更好地抵抗老化效果。样品的洗涤耐久性研究表明,样品的疏水性在50个洗涤循环中具有可接受的耐久性。通过拉曼和X射线光电子能谱(XPS)证明了基板上的金刚石(DLC)涂层的形成,然后通过Fe-SEM分析,能量分散光谱(EDX)和X-MAP探针表征。将该作品的结果与原始液体前体是乙醇的结果进行比较。结论是,与乙醇前体相比,N-己烷前体可能导致更好的疏水性。

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