Modification of the near-surface layers of a copper foil under the action of a volume gas discharge in air at atmospheric pressure

被引:0
|
作者
M. A. Shulepov
V. F. Tarasenko
I. M. Goncharenko
N. N. Koval’
I. D. Kostyrya
机构
[1] Russian Academy of Sciences,Institute of High
来源
Technical Physics Letters | 2008年 / 34卷
关键词
52.77.Bn; 52.40.Hf;
D O I
暂无
中图分类号
学科分类号
摘要
We have studied the modification of the near-surface layers of a copper foil under the action of a volume gas discharge, which was generated in air at atmospheric pressure by nanosecond high-voltage pulses of both negative and positive polarity applied between the foil and an electrode with a small radius of curvature. It is established that the surface layer of the discharge-treated copper foil in the central region is cleaned from carbon contaminations, while oxygen atoms penetrate in depth of the foil. The depth of a cleaned layer depends on the polarity of voltage pulses. For the positive voltage polarity on the foil, the cleaning takes place up to a depth exceeding 50 nm, while oxygen penetrates up to a depth of about 25 nm.
引用
收藏
页码:296 / 299
页数:3
相关论文
共 47 条
  • [21] Ultrashort electron beam and volume high-current discharge in air under the atmospheric pressure
    V. F. Tarasenko
    S. B. Alekseev
    V. M. Orlovskii
    V. G. Shpak
    S. A. Shunailov
    Technical Physics, 2004, 49 : 982 - 986
  • [22] Near-surface Plasma Formation in Air under Action of Two Laser Pulses at Two Wavelengths on Titanium in the Air
    Chumakov, A. N.
    Bosak, N. A.
    Ivanov, A. A.
    2019 PHOTONICS & ELECTROMAGNETICS RESEARCH SYMPOSIUM - SPRING (PIERS-SPRING), 2019, : 2777 - 2782
  • [23] KINETICS OF DECOMPOSITION OF PARACETAMOL IN AQUEOUS SOLUTION UNDER THE ACTION OF A DC DISCHARGE AT ATMOSPHERIC PRESSURE IN AIR
    Ignatiev, A. A.
    Guschin, A. A.
    Shutov, D. A.
    Ivanov, A. N.
    Manukyan, A. S.
    Ivanova, P. A.
    Rybkin, V. V.
    IZVESTIYA VYSSHIKH UCHEBNYKH ZAVEDENII KHIMIYA I KHIMICHESKAYA TEKHNOLOGIYA, 2023, 66 (08): : 135 - 140
  • [24] Near-surface modification of optical properties of fused silica by low-temperature hydrogenous atmospheric pressure plasma
    Gerhard, Christoph
    Tasche, Daniel
    Brueckner, Stephan
    Wieneke, Stephan
    Vioel, Wolfgang
    OPTICS LETTERS, 2012, 37 (04) : 566 - 568
  • [25] Strength of near-surface layers of zirconium alloys and vacuum-arc deposited coatings under the action of microimpact
    Kovalenko, V. I.
    Marinin, V. G.
    PROBLEMS OF ATOMIC SCIENCE AND TECHNOLOGY, 2008, (01): : 77 - 80
  • [26] Gas flow influence on streamer-to-leader transition in surface barrier discharge in air at atmospheric pressure
    Akishev, Y.
    Karalnik, V.
    Medvedev, M.
    Petryakov, A.
    Trushkin, N.
    Shafikov, A.
    VIII ALL-RUSSIAN (WITH INTERNATIONAL PARTICIPATION) CONFERENCE ON LOW TEMPERATURE PLASMA IN THE PROCESSES OF FUNCTIONAL COATING PREPARATION, 2017, 789
  • [27] Biaxially oriented polypropylene (BOPP) surface modification by nitrogen atmospheric pressure glow discharge (APGD) and by air corona
    Guimond, S
    Radu, I
    Czeremuszkin, G
    Carlsson, DJ
    Wertheimer, MR
    PLASMAS AND POLYMERS, 2002, 7 (01) : 71 - 88
  • [28] THE IMPACT OF MOUNTAIN LEE WAVES ON THE NEAR-SURFACE ATMOSPHERIC PRESSURE AND LOCAL AIR CIRCULATION IN THE FORELAND OF THE POLISH TATRA MOUNTAINS
    Szmyd, Jakub
    GEOGRAPHIA POLONICA, 2016, 89 (03) : 405 - 409
  • [29] Surface modification of cellulose via atmospheric pressure plasma processing in air and ammonia-nitrogen gas
    Flynn, C. N.
    Byrne, C. P.
    Meenan, B. J.
    SURFACE & COATINGS TECHNOLOGY, 2013, 233 : 108 - 118
  • [30] Study of the surface modification of a nylon-6,6 film processed in an atmospheric pressure air dielectric barrier discharge
    Cui, NY
    Upadhyay, DJ
    Anderson, CA
    Brown, NMD
    SURFACE & COATINGS TECHNOLOGY, 2005, 192 (01): : 94 - 100