Phenol-benzene complexation dynamics: Quantum chemistry calculation, molecular dynamics simulations, and two dimensional IR spectroscopy

被引:43
作者
Kwac, Kijeong
Lee, Chewook
Jung, Yousung
Han, Jaebeom
Kwak, Kyungwon
Zheng, Junrong
Fayer, M. D.
Cho, Minhaeng
机构
[1] Korea Univ, Dept Chem, Seoul 136701, South Korea
[2] Korea Univ, Ctr Multidimens Spect, Seoul 136701, South Korea
[3] Stanford Univ, Dept Chem, Stanford, CA 94305 USA
关键词
D O I
10.1063/1.2403132
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
Molecular dynamics (MD) simulations and quantum mechanical electronic structure calculations are used to investigate the nature and dynamics of the phenol-benzene complex in the mixed solvent, benzene/CCl4. Under thermal equilibrium conditions, the complexes are continuously dissociating and forming. The MD simulations are used to calculate the experimental observables related to the phenol hydroxyl stretching mode, i.e., the two dimensional infrared vibrational echo spectrum as a function of time, which directly displays the formation and dissociation of the complex through the growth of off-diagonal peaks, and the linear absorption spectrum, which displays two hydroxyl stretch peaks, one for the complex and one for the free phenol. The results of the simulations are compared to previously reported experimental data and are found to be in quite reasonable agreement. The electronic structure calculations show that the complex is T shaped. The classical potential used for the phenol-benzene interaction in the MD simulations is in good accord with the highest level of the electronic structure calculations. A variety of other features is extracted from the simulations including the relationship between the structure and the projection of the electric field on the hydroxyl group. The fluctuating electric field is used to determine the hydroxyl stretch frequency-frequency correlation function (FFCF). The simulations are also used to examine the number distribution of benzene and CCl4 molecules in the first solvent shell around the phenol. It is found that the distribution is not that of the solvent mole fraction of benzene. There are substantial probabilities of finding a phenol in either a pure benzene environment or a pure CCl4 environment. A conjecture is made that relates the FFCF to the local number of benzene molecules in phenol's first solvent shell. (c) 2006 American Institute of Physics.
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共 88 条
[1]   PHOTON ECHOES [J].
ABELLA, ID ;
KURNIT, NA ;
HARTMANN, SR .
PHYSICAL REVIEW, 1966, 141 (01) :391-&
[2]   Water dynamics: Vibrational echo correlation spectroscopy and comparison to molecular dynamics simulations [J].
Asbury, JB ;
Steinel, T ;
Stromberg, C ;
Corcelli, SA ;
Lawrence, CP ;
Skinner, JL ;
Fayer, MD .
JOURNAL OF PHYSICAL CHEMISTRY A, 2004, 108 (07) :1107-1119
[3]   Dynamics of water probed with vibrational echo correlation spectroscopy [J].
Asbury, JB ;
Steinel, T ;
Kwak, K ;
Corcelli, SA ;
Lawrence, CP ;
Skinner, JL ;
Fayer, MD .
JOURNAL OF CHEMICAL PHYSICS, 2004, 121 (24) :12431-12446
[4]   Vibrational echo correlation spectroscopy probes of hydrogen bond dynamics in water and methanol [J].
Asbury, JB ;
Steinel, T ;
Fayer, MD .
JOURNAL OF LUMINESCENCE, 2004, 107 (1-4) :271-286
[5]   Hydrogen bond dynamics probed with ultrafast infrared heterodyne-detected multidimensional vibrational stimulated echoes [J].
Asbury, JB ;
Steinel, T ;
Stromberg, C ;
Gaffney, KJ ;
Piletic, IR ;
Goun, A ;
Fayer, MD .
PHYSICAL REVIEW LETTERS, 2003, 91 (23)
[6]   Hydrogen bond breaking probed with multidimensional stimulated vibrational echo correlation spectroscopy [J].
Asbury, JB ;
Steinel, T ;
Stromberg, C ;
Gaffney, KJ ;
Piletic, IR ;
Fayer, MD .
JOURNAL OF CHEMICAL PHYSICS, 2003, 119 (24) :12981-12997
[7]   Ultrafast heterodyne detected infrared multidimensional vibrational stimulated echo studies of hydrogen bond dynamics [J].
Asbury, JB ;
Steinel, T ;
Stromberg, C ;
Gaffney, KJ ;
Piletic, IR ;
Goun, A ;
Fayer, MD .
CHEMICAL PHYSICS LETTERS, 2003, 374 (3-4) :362-371
[8]   Transient absorption of vibrationally excited water [J].
Bakker, HJ ;
Nienhuys, HK ;
Gallot, G ;
Lascoux, N ;
Gale, GM ;
Leicknam, JC ;
Bratos, S .
JOURNAL OF CHEMICAL PHYSICS, 2002, 116 (06) :2592-2598
[9]   Reorientational motion and hydrogen-bond stretching dynamics in liquid water [J].
Bakker, HJ ;
Woutersen, S ;
Nienhuys, HK .
CHEMICAL PHYSICS, 2000, 258 (2-3) :233-245
[10]   MOLECULAR-DYNAMICS WITH COUPLING TO AN EXTERNAL BATH [J].
BERENDSEN, HJC ;
POSTMA, JPM ;
VANGUNSTEREN, WF ;
DINOLA, A ;
HAAK, JR .
JOURNAL OF CHEMICAL PHYSICS, 1984, 81 (08) :3684-3690