Theoretical estimation of the ionization potential of water in condensed phase. II. Superficial water layers

被引:0
|
作者
Yu. V. Novakovskaya
机构
[1] Moscow State University,Laboratory of Quantum Mechanics and Molecular Structure, Chair of Physical Chemistry, Department of Chemistry
来源
Protection of Metals | 2007年 / 43卷
关键词
31.15.Ar; 31.15.Qg; 33.15.Ry; 34.50.Ez; 36.40.Wa;
D O I
暂无
中图分类号
学科分类号
摘要
Quantum chemical calculations of neutral and charged (H2O)n water clusters modeling fragments of a real hydrogen-bond network of water and dynamic simulations of the clusters either upon the electron removal from a stable neutral cluster or upon the excitation of various cluster vibrations enabled us to distinguish separate stages of the structure reorganization. Thermal motion of molecules in a liquid modeled by the low-frequency rotational vibrations and swinging of molecules prevents the formation of cations with the optimum mutual arrangement of the OH radical and H3O+ ion. Judging from the typical periods of reactive vibrations and those motions, which impede the desired structure reorganization, the most probable should be the formation of OH…H2O…H3O+ fragments in liquid water. The energy necessary for the ionization of superficial water layers (at the irradiation) can be estimated from the intermediate ionization potentials of water clusters. Extrapolating the dependence of these potentials on the number of water molecules constituting the cluster provided the first ever theoretical estimate of the threshold ionization energy of water: 9.5 eV.
引用
收藏
页码:22 / 33
页数:11
相关论文
共 50 条
  • [41] Polarizable interaction potential for water from coupled cluster calculations. II. Applications to dimer spectra, virial coefficients, and simulations of liquid water
    Bukowski, Robert
    Szalewicz, Krzysztof
    Groenenboom, Gerrit C.
    van der Avoird, Ad
    JOURNAL OF CHEMICAL PHYSICS, 2008, 128 (09):
  • [42] Universal scaling of potential energy functions describing intermolecular interactions. II. The halide-water and alkali metal-water interactions
    Werhahn, Jasper C.
    Akase, Dai
    Xantheas, Sotiris S.
    JOURNAL OF CHEMICAL PHYSICS, 2014, 141 (06):
  • [43] Exploring the gel phase of cationic glycylalanylglycine in ethanol/water. II. Spectroscopic, kinetic and thermodynamic studies
    DiGuiseppi, David M.
    Thursch, Lavenia
    Alvarez, Nicolas J.
    Schweitzer-Stenner, Reinhard
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2020, 573 : 123 - 134
  • [44] INTERFACIAL SHEAR OF CO-CURRENT STEAM-WATER FLOW ESTIMATION - II. ENHANCED SINGLE-PHASE FLUENT MODEL IN CONJUNCTION WITH MEASURED PROFILES OF STEAM VELOCITY AND LONGITUDINAL WATER TEMPERATURE
    Gasiunas, Stasys
    Seporaitis, Marijus
    Cesna, Benediktas
    Valincius, Mindaugas
    Pabarcius, Raimondas
    Laurinavicius, Darius
    HEAT TRANSFER RESEARCH, 2012, 43 (05) : 425 - 442
  • [45] Theoretical study of the proton transfer between water and [FeH(CO)4]- in aqueous solution and relevance to the water-gas shift reaction catalyzed by iron pentacarbonyl in the condensed phase
    Amovilli, C
    Floris, FM
    Solà, M
    Tomasi, J
    ORGANOMETALLICS, 2001, 20 (07) : 1310 - 1316
  • [46] Potential Complexing Ability of Surface Water Organic Matter: II. Toxicity of Metal-Containing Aquatic Environment
    P. N. Linnik
    V. A. Zhezherya
    L. S. Kipnis
    Russian Journal of General Chemistry, 2020, 90 : 2691 - 2699
  • [47] Potential Complexing Ability of Surface Water Organic Matter: II. Toxicity of Metal-Containing Aquatic Environment
    Linnik, P. N.
    Zhezherya, V. A.
    Kipnis, L. S.
    RUSSIAN JOURNAL OF GENERAL CHEMISTRY, 2020, 90 (13) : 2691 - 2699
  • [48] Advanced Water Management in PEFCs: Diffusion Layers with Patterned Wettability II. Measurement of Capillary Pressure Characteristic with Neutron and Synchrotron Imaging
    Forner-Cuenca, A.
    Biesdorf, J.
    Lamibrac, A.
    Manzi-Orezzoli, V.
    Buechi, F. N.
    Gubler, L.
    Schmidt, T. J.
    Boillat, P.
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2016, 163 (09) : F1038 - F1048
  • [49] A study of the properties of the system lithium chlorate-water. I. Introduction. II. Phase relations
    Kraus, CA
    Burgess, WM
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1927, 49 : 1226 - 1235
  • [50] Air-water-oil three-phase flow. Part II. Model of pressure drop
    Troniewski, L
    Dyga, R
    INZYNIERIA CHEMICZNA I PROCESOWA, 2003, 24 (04): : 601 - 615