搅拌式等离子体反应器对PP粉体的表面处理
Surface Treatment of Polypropylene Powders Using a Plasma Reactor with a Stirrer
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摘要: 用带搅拌的射频氩等离子体反应器对聚丙烯 (PP)粉体进行表面处理, 采用水接触角 (WCA)、X光电子能谱 (XPS)和衰减全反射傅立叶变换红外光谱 (ATR-FTIR)对等离子体处理前后PP粉体的水接触角、表面成分的变化进行了分析。处理前PP粉体的水接触角为130.2°, 在等离子体处理5分钟后, 水接触角变为73.6°。随着等离子体处理时间延长, 水接触角减小, 而C-O, C=O和O-C=O等含氧极性官能团的数量增加。XPS和ATR-FTIR分析表明, 由于等离子体处理, PP粉体表面被氧化生成含氧极性官能团, 水接触角随等离子体处理时间的变化趋势与PP粉体表面氧原子的浓度有一定的关系。对等离子体处理的PP粉体的老化现象也进行了研究。Abstract: A radio frequency argon plasma reactor with a stirrer was employed for the surface treatment of polypropylene (PP) powders. The changes in the superficial contact angle and the superficial composition of the un-treated and treated PP powders were analyzed by means of water contact angle (WCA) measurement, X-ray photoelectron spectroscopy (XPS) and attenuated total reflection Fourier transform infrared spectroscopy (ATR-FTIR). The water contact angle changed from the original value of 130.2° before plasma treatment to the value of 73.6° after treatment for 5 minutes. With the increase in plasma treating time, there were a decrease in the water contact angle and an increase in the content of oxygen containing polar functional groups (i.e., C-O, C=O and O-C=O). Both XPS and ATR-FTIR results indicated that the plasma treatment led to the formation of oxygen containing polar functional groups due to oxidation on the surface of the PP powders, and the trend of variation of the water contact angle with plasma treating time was related to the concentration of oxygen atom on the treated PP powders surface. Furthermore, the aging of the plasma-treated PP powders was investigated.
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