Probing the Hydration Structure of Polarizable Halides: A Multiedge XAFS and Molecular Dynamics Study of the Iodide Anion

被引:77
作者
Fulton, John L. [1 ]
Schenter, Gregory K. [1 ]
Baer, Marcel D. [2 ]
Mundy, Christopher J. [1 ]
Dang, Liem X. [1 ]
Balasubramanian, Mahalingam [3 ]
机构
[1] Pacific NW Natl Lab, Chem & Mat Sci Div, Richland, WA 99354 USA
[2] Ruhr Univ Bochum, Lehrstuhl Theoret Chem, D-44780 Bochum, Germany
[3] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA
关键词
X-RAY-ABSORPTION; DENSITY-FUNCTIONAL THEORY; ION SOLVATION; AB-INITIO; ELECTRONIC-STRUCTURE; WATER; LIQUID; SPECTROSCOPY; SPECTRA; SIMULATIONS;
D O I
10.1021/jp106378p
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
A comprehensive analysis of the H2O structure about aqueous iodide (I) is reported from molecular dynamics (MD) simulation and X-ray absorption fine structure (XAFS) measurements. This study establishes the essential ingredients of an interaction potential that reproduces the experimentally determined first-solvation shell of aqueous iodide. XAFS spectra from the iodide K, L-1, and L-3 edges were corefined to establish the complete structure of the first hydration shell about aqueous iodide. Further, we have utilized molecular dynamics simulations employing both DFT (-1-dispersion) and empirical polarizable interaction potentials to generate an ensemble of structures that were directly compared to the XAFS data. Our results indicate that DFT-MD simulations provide a description of the molecular structure that is more consistent with the XAFS experimental data. The experimental data yield approximately 6.3 water molecules located at I-H and I-O distances of 2.65 and 3.50 angstrom. respectively. The differences in the two interaction potentials can be traced to the treatment of the electronic charge density in the vicinity of the iodide. The empirical polarizable interaction potential yields a significantly higher induced dipole for the aqueous iodide than the DE-I study. The lower induced dipole moment from the DFT simulation produces a higher coordination number and leads to a more symmetric solvation environment than that produced by the empirical polarizable interaction potential. Furthermore, the hydrogen bonding of second-shell water with the first-shell water establishes a strong ordering of the water about the iodide surface.
引用
收藏
页码:12926 / 12937
页数:12
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