论文标题

用血浆选择性蚀刻制备的聚对苯二甲酸酯织物的耐用且可回收的亲水性

Durable and Recoverable Hydrophilicity of Polyethylene Terephthalate Fabric Prepared with Plasma Selective Etching

论文作者

Owad, Tarig T. A., Siddig, Eshraga A. A., Salih, Renad E. M., Zhang, Yu, Xu, Yu, Zhang, Jing

论文摘要

通过血浆选择蚀刻,可以获得耐用的delustred PET(PET-TIO2)织物超亲水表面。血浆处理后其亲水性的衰老作用已通过储存时间进行了研究。 AR/O2射频(RF)血浆处理仅7分钟后,PET-TIO2织物显示出0O的水接触角。 10个月的存储时间后,它将其水接触角保持在75.7O以下。此外,随着氙气光照射10分钟,首先发现它具有良好的水接触角至5°。虽然PET织物的接触角7分钟返回至123.0°,而其亲水性几乎完全消失,并且对Xenon光照射没有任何反应。 7分钟血浆处理的PET-TIO2织物的吸水率增加了57.54%。通过现场发射扫描电子显微镜(Fe-SEM),X射线光电子光谱(XPS)和X射线衍射分析(XRD)测量,在等离子体处理的PET-Tio2织物表面上发现了具有不规则颗粒或凹坑的驼峰和山脊的波状结构,并观察到了TI ATOMIC率高的百分比。可以证实,PET-TIO2纤维内的TIO2颗粒已通过血浆选择性蚀刻其有机成分暴露于其表面。它抑制衰老效果,并以耐用且可回收的亲水性为特征。这一步骤,快速,绿色和可共鸣的制造方法对耐用的超养分表面有一个实践应用。

Durable delustered PET (PET-TiO2) fabrics super hydrophilic surface has been obtained by plasma selecting etching. The aging effect of their hydrophilicity after plasma treatment has been investigated with storage time. After Ar/O2 radio frequency (RF) plasma treatment for only 7 min, PET-TiO2 fabric showed water contact angle of 0o. After 10 month storage time, it keeps its water contact angle below 75.7o. Further more, with Xenon light irradiation for 10 min, it is firstly found that it has well-recovered water contact angle to 5°. While the contact angle of PET fabric for 7 min returns to 123.0° and its hydrophilicity disappeared almost completely and showed no response to Xenon light irradiation. The water absorption rate of 7 min plasma treated PET-TiO2 fabric increased by 57.54%. By field emission scanning electron microscopy (FE-SEM), X-ray photoelectron spectroscopy (XPS) and X-ray diffraction analysis(XRD) measurement, waviness structure of humps and ridges with irregular particles or pits were found on the plasma treated PET-TiO2 fabric surface and increased Ti atomic percentage was observed. It is verified that TiO2 particles inside PET-TiO2 fiber have been exposed to its surface by plasma selective etching of its organic component. It suppresses the aging effect and is characterized with durable and recoverable hydrophilicity. This one step, quick, green and cost-resonable manufacture method has a pratical application for durable superhydrophilic surfaces.

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