Hydrated Electron Diffusion: The Importance of Hydrogen-Bond Dynamics

被引:11
作者
Tay, Kafui A. [1 ]
Boutin, Anne [1 ]
机构
[1] Univ Paris 11, Chim Phys Lab, F-91405 Orsay, France
关键词
EXCESS ELECTRON; SOLVATED ELECTRON; HIGH-TEMPERATURE; RATE CONSTANTS; WATER; SIMULATION; REARRANGEMENTS; SPECTROSCOPY; DEPENDENCE; MIGRATION;
D O I
10.1021/jp810538f
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Mixed quantum-classical molecular dynamics simulations have been used to investigate hydrated electron diffusion within the temperature range 283-400 K. The Arrhenius to non-Arrhenius behavior observed in experiments is reproduced with a transition temperature, T-t, estimated at 320 K Above this temperature, the activation energy for diffusion is 7.5 +/- 0.3 kJ mol(-1). By computing equilibrium constants for interconversions between H-bonded and non-H-bonded configurations, we show that hydrated electron diffusion is driven by fluctuations in the H-bond network of hydrating water molecules. The computed activation energy is in fact the energy change associated with H-bond breakings. Above T-t, librational dynamics appear to dominate H-bond breakings in hydrating water molecules. Below T-t, in the non-Arrhenius region, hydrated electron diffusion is driven by both the librational and translational dynamics of the hydrating water molecules. A kinetic analysis is presented to complement the above findings.
引用
收藏
页码:11943 / 11949
页数:7
相关论文
共 50 条
  • [31] A first principles molecular dynamics study of vibrational spectral diffusion and hydrogen bond dynamics in liquid methanol
    Yadav, Vivek K.
    Karmakar, Anwesa
    Choudhuri, Jyoti Roy
    Chandra, Amalendu
    CHEMICAL PHYSICS, 2012, 408 : 36 - 42
  • [32] Hydrogen-Bond Dynamics of C-H•••O Interactions: The Chloroform•••Acetone Case
    Vaz, Pedro D.
    Nolasco, Mariela M.
    Gil, Francisco P. S. C.
    Ribeiro-Claro, Paulo J. A.
    Tomikinson, John
    CHEMISTRY-A EUROPEAN JOURNAL, 2010, 16 (30) : 9010 - 9017
  • [33] Nuclear Spin Conversion to Probe the Methyl Rotation Effect on Hydrogen-Bond and Vibrational Dynamics
    Lozada-Garcia, Rolando R.
    Ceponkus, Justinas
    Chevalier, Michele
    Chin, Wutharath
    Mestdagh, Jean-Michel
    Crepin, Claudine
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2012, 51 (28) : 6947 - 6950
  • [34] Molecular Dynamics Study of Hydrogen Bond Structure and Tensile Strength for Hydrated Amorphous Cellulose
    Nakamura, Tomoka
    Ishiyama, Tatsuya
    BIOMACROMOLECULES, 2024, 25 (11) : 7249 - 7259
  • [35] Hydrogen-Bond Equilibria and Lifetimes in a Monohydroxy Alcohol
    Gainaru, C.
    Kastner, S.
    Mayr, F.
    Lunkenheimer, P.
    Schildmann, S.
    Weber, H. J.
    Hiller, W.
    Loidl, A.
    Boehmer, R.
    PHYSICAL REVIEW LETTERS, 2011, 107 (11)
  • [36] Singlet Halophenylcarbenes as Strong Hydrogen-Bond Acceptors
    Richter, Genevieve
    Mendez-Vega, Enrique
    Sander, Wolfram
    JOURNAL OF PHYSICAL CHEMISTRY A, 2016, 120 (20) : 3524 - 3532
  • [37] Hydrogen-bond Network of Water and Irradiation Effects
    Novakovskaya, Yu, V
    PHYSICS OF WAVE PHENOMENA, 2020, 28 (02) : 161 - 167
  • [38] Hydrogen bond interactions in hydrated acetylsalicylic acid
    Karthika, M.
    Senthilkumar, K.
    Kanakaraju, R.
    COMPUTATIONAL AND THEORETICAL CHEMISTRY, 2011, 966 (1-3) : 167 - 179
  • [39] Ultrafast Proton and Electron Dynamics in Core-Ionized Hydrated Hydrogen Peroxide: Photoemission Measurements with Isotopically Substituted Hydrogen Peroxide
    Unger, Isaak
    Thuermer, Stephan
    Hollas, Daniel
    Aziz, Emad F.
    Winter, Bernd
    Slavicek, Petr
    JOURNAL OF PHYSICAL CHEMISTRY C, 2014, 118 (50) : 29142 - 29150
  • [40] Control over the Hydrogen-Bond Docking Site in Anisole by Ring Methylation
    Gottschalk, Hannes C.
    Altnoeder, Jonas
    Heger, Matthias
    Suhm, Martin A.
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2016, 55 (05) : 1921 - 1924