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Surface Functionalization of Polyethylene Granules by Treatment with Low-Pressure Air Plasma

机译:低压空气等离子体处理聚乙烯颗粒的表面功能化

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摘要

Polyethylene granules of diameter 2 mm were treated with a low-pressure weakly ionized air plasma created in a metallic chamber by a pulsed microwave discharge of pulse duration 180 μs and duty cycle 70%. Optical emission spectroscopy showed rich bands of neutral nitrogen molecules and weak O-atom transitions, but the emission from N atoms was below the detection limit. The density of O atoms in the plasma above the samples was measured with a cobalt catalytic probe and exhibited a broad peak at the pressure of 80 Pa, where it was about 2.3 × 1021 m−3. The samples were characterized by X-ray photoelectron spectroscopy. Survey spectra showed oxygen on the surface, while the nitrogen concentration remained below the detection limit for all conditions. The high-resolution C1s peaks revealed formation of various functional groups rather independently from treatment parameters. The results were explained by extensive dissociation of oxygen molecules in the gaseous plasma and negligible flux of N atoms on the polymer surface.
机译:直径为2 mm的聚乙烯颗粒用在金属腔室中产生的低压弱电离空气等离子体通过脉冲持续时间为180μs,占空比为70%的脉冲微波放电处理。发射光谱显示中性氮分子带很宽,O原子跃迁较弱,但N原子的发射低于检测极限。用钴催化探针测量样品上方血浆中O原子的密度,并在80 Pa的压力下表现出宽峰,该峰约为2.3×10 21 m - 3 。通过X射线光电子能谱对样品进行表征。调查光谱显示,在所有条件下,表面上都有氧气,而氮气浓度仍低于检测极限。高分辨率的C1s峰揭示了各种官能团的形成,而与治疗参数无关。气体等离子体中氧分子的大量解离和聚合物表面N原子的通量可忽略不计,解释了这一结果。

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