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使用X射线光电子能谱(XPS)和润湿性测量分析等离子体处理的超疏水聚丙烯上的时间依赖性疏水恢复。

Analysis of time-dependent hydrophobic recovery on plasma-treated superhydrophobic polypropylene using XPS and wettability measurements.

作者信息

Vámos Csenge, Füredi Máté, Hórvölgyi Zoltán, Krafcsik Olga, Kiss Gábor, Bárány Tamás, Marosfői Botond Béla

机构信息

Department of Polymer Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Műegyetem rkp. 3, Budapest, 1111, Hungary.

Furukawa Electric Institute of Technology Ltd, Késmárk U. 28/A, Budapest, 1158, Hungary.

出版信息

Sci Rep. 2024 Oct 10;14(1):23715. doi: 10.1038/s41598-024-72573-y.

Abstract

In specific applications like ice-repellent coatings or membrane separation technology, wettability is a key parameter affecting the applicability of commodity polymers. This study presents a technique to fine-control the wetting properties of a hierarchically structured polypropylene surface, enabling the transition between superhydrophobic and superhydrophilic states. To demonstrate the tunability of the wetting properties of polypropylene (PP) substrate, we prepared in a consecutive way superhydrophobic (advancing contact angle (CA) of 152°) and superhydrophilic (CA of 0°) material by solvent-treatment and mild air plasma treatment. The optimal plasma treatment parameters to achieve superhydrophilic wetting behaviour, which is stable for at least one week of storage in air was also explored. Water contact angle measurement and X-ray photoelectron spectroscopy were used to monitor the time dependency of hydrophobic recovery on a hierarchically structured PP surface. With a simple model considering structural and wetting parameters, we characterized the droplet spreading behaviour of plasma-treated roughened surfaces, which exhibited superhydrophilic wetting behaviour with equilibrium CA of nearly 0°. The proposed model, which aligns well with experimental data, can be used to compare the droplet spreading behaviour of plasma-treated roughened surfaces.

摘要

在诸如防冰涂层或膜分离技术等特定应用中,润湿性是影响商用聚合物适用性的关键参数。本研究提出了一种对具有分级结构的聚丙烯表面的润湿性能进行精细控制的技术,能够实现超疏水状态与超亲水状态之间的转变。为了证明聚丙烯(PP)基材润湿性能的可调性,我们通过溶剂处理和温和的空气等离子体处理,依次制备了超疏水(前进接触角(CA)为152°)和超亲水(CA为0°)材料。还探索了实现超亲水润湿性的最佳等离子体处理参数,该润湿性在空气中储存至少一周时是稳定的。采用水接触角测量和X射线光电子能谱来监测分级结构PP表面上疏水恢复的时间依赖性。通过一个考虑结构和润湿参数的简单模型,我们对经等离子体处理的粗糙表面的液滴铺展行为进行了表征,该表面表现出平衡CA接近0°的超亲水润湿性。所提出的模型与实验数据吻合良好,可用于比较经等离子体处理的粗糙表面的液滴铺展行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60fb/11467171/1066535a7fd7/41598_2024_72573_Fig1_HTML.jpg

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