Factors Governing the Formation of Oxygen-Containing Copper Powders in a Plasma-Solution System

被引:0
|
作者
Dmitriy A. Shutov
Kristina V. Smirnova
Alexander N. Ivanov
Vladimir V. Rybkin
机构
[1] Ivanovo State University of Chemistry and Technology,Department of Microelectronic Devices and Materials
来源
关键词
Gas discharge; Liquid anode; Copper oxides; Colloidal solution; Kinetics; Mechanisms;
D O I
暂无
中图分类号
学科分类号
摘要
The formation of precipitation under the action of a direct current atmospheric pressure discharge in air on a copper (II) nitrate solution was investigated. The discharge was excited by applying a high voltage to two pointed titanium electrodes placed above the liquid anode and liquid cathode in the H-shaped cell. The one of the advantages of such design is the absence of the contact of the electrodes and liquid phase that can affect on the precipitation composition. The studies were carried out at initial concentrations of 0.005 and 0.1 mol·L−1 of Cu(NO3)2 and discharge currents from 30 to 70 mA. Under the discharge action of the discharge, the formation of colloidal solutions occurs only in the anode part of the discharge. Turbidimetry kinetic measurements showed that the process includes two stages. In the first stage (slow), insoluble copper compounds are formed, the coagulation of which and an increase in concentration leads to the second stage (fast). When the precipitate is calcined, crystalline monoclinic CuO is formed. The size of the aggregates of the sediment particles was less than 1 μm. It is assumed that the process is initiated by solvated electrons generated in the anodic part of the discharge. Their reactions with water molecules lead to the formation of hydroxide ions. These ions, reacting with copper ions, lead to the formation of their insoluble hydroxo compounds.
引用
收藏
页码:179 / 190
页数:11
相关论文
共 50 条
  • [41] Surface Treatment of Polypropylene using a Large Area Atmospheric Pressure Plasma-solution System
    Chinh Quoc Tran
    Choi, Ho-Suk
    KOREAN CHEMICAL ENGINEERING RESEARCH, 2011, 49 (03): : 271 - 276
  • [42] The formation of petroleum biomarker hydrocarbons from possible oxygen-containing precursors
    T. V. Okunova
    M. V. Giruts
    O. G. Erdnieva
    V. N. Koshelev
    G. N. Gordadze
    Petroleum Chemistry, 2009, 49 : 207 - 217
  • [43] Oxide increments of the standard formation enthalpies of oxygen-containing complex compounds
    Oskembekov, I. M.
    SHaripova, Z. M.
    Bekturganov, N. S.
    BULLETIN OF THE UNIVERSITY OF KARAGANDA-CHEMISTRY, 2012, (66): : 35 - 39
  • [44] The formation of petroleum biomarker hydrocarbons from possible oxygen-containing precursors
    Okunova, T. V.
    Giruts, M. V.
    Erdnieva, O. G.
    Koshelev, V. N.
    Gordadze, G. N.
    PETROLEUM CHEMISTRY, 2009, 49 (03) : 207 - 217
  • [45] THE FORMATION OF OXYGEN-CONTAINING ORGANIC-MOLECULES IN THE ORION COMPACT RIDGE
    MILLAR, TJ
    HERBST, E
    CHARNLEY, SB
    ASTROPHYSICAL JOURNAL, 1991, 369 (01): : 147 - 156
  • [46] Radiation-Chemical Formation of Ozone in an Oxygen-Containing Gas Atmosphere
    G. Ya. Gerasimov
    High Energy Chemistry, 2004, 38 : 75 - 80
  • [48] Regularities of oxycarbide layers formation on titanium in carbon and oxygen-containing environment
    Pohreliuk, I.M.
    Yaskiv, O.I.
    Fedirko, V.M.
    Huryn, S.V.
    2003, Naukova dumka, L'vov, Ukraine (39):
  • [49] Study of the Ag/HAP/Pt system in an oxygen-containing atmosphere
    Kolbasov, GY
    Karasyova, TA
    Oreshnikov, VG
    Klyuchnikov, MN
    Psaryova, TS
    SOLID STATE IONICS, 1997, 100 (1-2) : 73 - 76
  • [50] Ultra-shallow thermal donor formation in oxygen-containing ambient
    Åberg, D
    Hallberg, T
    Svensson, BG
    Lindström, JL
    Linnarsson, MK
    PHYSICA STATUS SOLIDI B-BASIC RESEARCH, 1998, 210 (02): : 527 - 532