O2和N2等离子体处理对HDPE表面润湿性的影响研究OA北大核心CSTPCD
Effect of Oxygen and Nitrogen Plasma Treatment on Surface Wettability of HDPE
为改善高密度聚乙烯(HDPE)表面润湿性,分别采用氧气(O2)和氮气(N2)等离子体对其表面进行改性,以水(H2O)和二碘甲烷(CH2I2)作为测试液对改性前后的表面接触角进行测试,分析了改性后表面润湿性变化,确定了O2和N2低温等离子体改善HDPE表面润湿性的最优工艺.进一步采用扫描电子显微镜(SEM)、傅里叶红外光谱(FTIR)、X射线衍射仪(XRD)、X光电子能谱微观结构(XPS)对最优工艺处理前后HDPE表面形貌、化学结构及官能团进行了分析.结果表明:经O2和N2等离子体处理后,HDPE表面润湿性显著提高,表面能增大,两种等离子体改善HDPE表面润湿性最优工艺分别为功率1 000 W、时间10 s、流速1.5 L/min(O2),功率800 W、时间15 s、流速2.5 L/min(N2);等离子体处理后,HDPE表面发生蚀刻现象,产生明显凹坑,并在其表面引入了含氧官能团C—O、C=O、O—C=O和含氮气官能团—C—NH2、—C—NH—.N2等离子体最优工艺处理对HDPE表面润湿性改善效果较O2明显.
In order to improve the wettability of high density polyethylene(HDPE)surface,the surface of HDPE was modified by oxygen(O2)and nitrogen(N2)plasma respectively,the surface contact angles before and after modification were tested with water(H2O)and diiodomethane(CH2I2),the wettability changes of the modified surface were analyzed,and the optimal process for improving the surface wettability by plasma of O2 and N2 was determined.Furthermore,the surface morphology,chemical structure and functional groups of HDPE were analyzed by scanning electron microscopy(SEM),fourier infrared spectroscopy(FTIR),X-ray diffraction(XRD)and X-ray photoelectron spectroscopy(XPS).The results show that the wettability and surface energy of HDPE were increased significantly after being treated by O2 and N2 plasma.The optimum process for improving the surface wettability of HDPE by two kinds of plasma was as follows:Power 800 W,time 10 s,flow rate 1.5 L/min for O2,power 1 000 W,time 15 s,flow rate 2.5 L/min for N2.After plasma treatment,the surface of HDPE was etched and pitted,and oxygen-containing functional groups C=O,O—C=O,and nitrogen-containing functional groups—C—NH2,—C—NH—were introduced into the surface of HDPE.N2 optimal plasma treatment has a better effect on the surface wettability of HDPE than that of O2.
马子涵;王洪艳;袁少飞;张建;吴燕
南京林业大学,江苏南京 210037||浙江省林业科学研究院,浙江杭州 310023浙江省林业科学研究院,浙江杭州 310023南京林业大学,江苏南京 210037
化学工程
等离子体表面润湿性高密度聚乙烯
PlasmaSurface wettabilityHDPE
《塑料科技》 2024 (009)
20-26 / 7
浙江省省院合作重大项目(2023SY05)
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