Determination of organic impurities by plasma electron spectroscopy in nonlocal plasma at intermediate and high pressures

This study aims to improve impurity analysis by plasma electron spectroscopy for organic molecules. Various impurities can be registered simultaneously in one measurement, because the appearance energies of the characteristic Penning electrons vary for different chemical compounds. Herein, experimen...

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Veröffentlicht in:Plasma sources science & technology 2022-10, Vol.31 (10), p.107001
Hauptverfasser: Zhou, Chen, Yao, Jingfeng, Saifutdinov, Almaz I, Kudryavtsev, Anatoly A, Yuan, Chengxun, Ma, Guowei, Dou, Zhiyu, Cao, Jingjie, Ma, Mingxi, Zhou, Zhongxiang
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container_issue 10
container_start_page 107001
container_title Plasma sources science & technology
container_volume 31
creator Zhou, Chen
Yao, Jingfeng
Saifutdinov, Almaz I
Kudryavtsev, Anatoly A
Yuan, Chengxun
Ma, Guowei
Dou, Zhiyu
Cao, Jingjie
Ma, Mingxi
Zhou, Zhongxiang
description This study aims to improve impurity analysis by plasma electron spectroscopy for organic molecules. Various impurities can be registered simultaneously in one measurement, because the appearance energies of the characteristic Penning electrons vary for different chemical compounds. Herein, experimental studies were conducted on helium with alcohol vapor impurities in a nonlocal negative glow plasma of a short glow micro-discharge with an increase in pressure from 15 Torr to 150 Torr. As a result, plasma electron spectroscopy enables the detection of gas impurities in high-pressure (even at atmospheric) environments, which eliminates the need for expensive and cumbersome gas pumping systems and expands the scope of the method.
doi_str_mv 10.1088/1361-6595/ac91a1
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subjects electron distribution function
gas impurities detection
glow discharge
nonlocal plasma
plasma electron spectroscopy
probe diagnostic
title Determination of organic impurities by plasma electron spectroscopy in nonlocal plasma at intermediate and high pressures
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