Mechanism of C4F8 dissociation in parallel-plate-type plasma

离解(化学) 等离子体 激进的 离子 电子 氟碳化合物 电子密度 化学 聚合 材料科学 光化学 物理化学 有机化学 聚合物 物理 量子力学
作者
Hisataka Hayashi,Satoshi Morishita,Tetsuya Tatsumi,Yukinobu Hikosaka,Shuichi Noda,Hideo Nakagawa,Shōji Kobayashi,Masami Inoue,Tyuji Hoshino
出处
期刊:Journal of vacuum science & technology [American Institute of Physics]
卷期号:17 (5): 2557-2571 被引量:50
标识
DOI:10.1116/1.581997
摘要

To investigate the mechanism of C4F8 dissociation in parallel-plate-type plasma, we used several of the latest diagnostic tools and made extensive measurements of electrons, radicals, and ions under conditions that greatly suppressed the effects of plasma-surface interaction. These measurements showed that the amount of light fluorocarbon radicals and ions increased with increasing electron density. The dissociation of C4F8 was analyzed by using rate equations, after confirming the stability and uniformity of the plasma. The total dissociation rate coefficient of C4F8 was 1×10−8 cm3/s, and CF2 radicals were mainly generated from products of C4F8 dissociation. F was mainly generated from CF2 by electron-impact dissociation and lost by pumping. We could estimate that the C2F4 density was roughly comparable to the densities of CF and CF3, and that the surface loss probability of C2F4 increased with increasing electron density. C2F4 might play an important role in the etching because of its rich polymerization characteristics.

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