氟碳化合物
等离子体
介质阻挡放电
微波食品加热
电子密度
分析化学(期刊)
化学
喷射(流体)
原子物理学
同轴
材料科学
电介质
光电子学
有机化学
热力学
物理
量子力学
电气工程
工程类
作者
Sile Chen,Xinliu REN,Zhaoquan Chen,Xu Xiaojuan,Tao Cheng,Li Ping,Guanjun Zhang,Xinpei Lu
标识
DOI:10.1088/2058-6272/acdb51
摘要
Abstract Atmospheric fluorocarbon plasma plays an important role in the surface modification of insulating materials like polymers. The existing fluorocarbon plasma is usually generated by dielectric barrier discharge, which has a low concentration of reactive species and may cause insufficient surface fluorination. This work attempts to develop an atmospheric fluorocarbon plasma jet using a coaxial transmission line resonator by microwave discharge with locally enhanced electric field and high density. The gas temperature is reduced by pulse modulation technology. Three kinds of working gases, pure CF 4 , Ar/CF 4 and He/CF 4 , are utilized to generate the atmospheric microwave fluorocarbon plasma jet. The discharge images, optical emission spectra, electron densities and gas temperatures are studied experimentally. The results show that the Ar/CF 4 plasma jet has the best comprehensive performance, such as strong discharge intensity and controllable gas temperature. The electron density of the Ar/CF 4 plasma jet has a magnitude of 10 20 m −3 , indicating a higher density than that of the frequently used dielectric barrier discharge. With the other conditions unchanged, the gas temperature at the end of the Ar/CF 4 plasma jet can be reduced from 410.2 to 347.3 K by decreasing the duty cycle of the modulated pulse from 0.5 to 0.1. Thence, the microwave Ar/CF 4 plasma jet is considered to be a promising fluorocarbon plasma source for surface fluorination of polymers.
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