用高频射频等离子体提高 Pmma 薄膜的可加热性

Zahide TOSUN, Ayhan OZMEN
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引用次数: 1

摘要

聚甲基丙烯酸甲酯(PMMA)由于其有吸引力的物理和光学性质,具有广泛的应用。由于PMMA具有疏水(拒水)特性,在实际应用前必须对其表面进行改性。在本研究中,采用40.68 MHz高频CCP(电容耦合等离子体)射频系统与氮气(N)和氩气(Ar)气体对PMMA薄膜表面进行改性。实验在不同的等离子体功率下进行,同时保持压力和处理时间不变。用接触角和表面自由能(SFE)测量分析了等离子体处理表面的润湿性。并用x射线光电子能谱(XPS)研究了表面化学结构的变化。结果表明,所有的等离子体处理都增强了表面的亲水性,并且在高等离子体功率下获得了最低的接触角值。处理后表面的总SFE随功率增加而增加,其中极性组分对总SFE的贡献最大。用XPS结果证实了等离子体处理后表面形成极性基团。因此,发现高频CCP射频等离子体可以有效地用于获得亲水性聚合物表面。
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YÜKSEK FREKANSLI RF PLAZMALAR İLE PMMA FİLMLERİNİN ISILABİLİRLİĞİNİN İYİLEŞTİRİLMESİ
Poly(methyl methacrylate) (PMMA) has a wide variety of applications due to its attractive physical and optical properties. Due to its hydrophobic (water-repellent) character, the surface of PMMA should be modified before being used in applications. In this study, the surface of PMMA films were modified by 40.68 MHz high frequency CCP (capacitive-coupled plasma) RF system with nitrogen (N) and argon (Ar) gases. The experiments carried out under various plasma powers while the pressure and treatment time were kept constant. The wettability of the plasma treated surfaces was analyzed with contact angle and surface free energy (SFE) measurements. Also, the change in the chemical structure of the surfaces was investigated with X-ray photoelectron spectroscopy (XPS). The results showed that all plasma treatments enhanced the hydrophilicity of the surfaces and the lowest contact angle values obtained at high plasma power. The total SFE of the treated surfaces increased with power and the main contribution to total SFE came from polar components. The polar groups formation on the surface after plasma treatment was proved with XPS results. Hence, it was found that high frequency CCP RF plasmas can be used effectively to obtain hydrophilic polymer surfaces.
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