Very large amplitude intermolecular vibrations and wave function delocalization in 2,3-dimethylnaphthalene center dot He van der Waals complex

被引:27
作者
Bach, A [1 ]
Leutwyler, S [1 ]
Sabo, D [1 ]
Bacic, Z [1 ]
机构
[1] NYU,DEPT CHEM,NEW YORK,NY 10003
关键词
D O I
10.1063/1.475170
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
We report a combined experimental and theoretical study of the intermolecular vibrations and van der Waals isomerism of the 2,3-dimethylnaphthalene . He van der Waals complex. Two-color resonant two-photon ionization spectra of the S-0-->S-1 electronic transition of 2,3-dimethylnaphthalene . He exhibit five bands within 30 cm(-1) of the electronic origin. The intermolecular potential energy surface was modeled as a sum of atom-atom Lennard-Jones pair potentials; it exhibits two equivalent global minima on each side of the naphthalene moiety, and a single shallower local minimum adjacent to the two methyl groups. Based on this surface, accurate three-dimensional quantum calculations of the van der Waals vibrational levels using the discrete variable representation method were performed. Careful optimization of the potential parameters lead to a quantitative reproduction of four observed bands as intermolecular vibrational excitations, a vibrationally averaged He atom distance from the aromatic plane [z(0)] = 3.22 Angstrom, and a dissociation energy D-0(S-1) = -60.3 cm(-1), compatible with experiments. The fifth band is assigned as a van der Waals isomer, corresponding to the local minimum. The quantum calculations were extended up to the dissociation limit, yielding approximate to 173 van der Waals vibrational states. Above 70% of D-0, many vibrational states are completely delocalized over the potential surface, with root-mean-square vibrational amplitudes up to 6 Angstrom parallel to and up to 1.5 Angstrom perpendicular to the molecular surface. Calculated tunnelling splittings range from < 10(-4) cm(-1) for localized states, to >3 cm(-1) for highly delocalized ones. (C) 1997 American Institute of Physics.
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页码:8781 / 8793
页数:13
相关论文
共 46 条
[21]   A DISTRIBUTED GAUSSIAN APPROACH TO THE VIBRATIONAL DYNAMICS OF AR-BENZENE [J].
FAEDER, J .
JOURNAL OF CHEMICAL PHYSICS, 1993, 99 (10) :7664-7676
[22]   LASER SPECTROSCOPY AND PHOTODYNAMICS OF INDOLE AND INDOLE-VANDERWAALS MOLECULES IN A SUPERSONIC BEAM [J].
HAGER, J ;
WALLACE, SC .
JOURNAL OF PHYSICAL CHEMISTRY, 1983, 87 (12) :2121-2127
[23]   ELECTRONIC-SPECTRA OF THE MIXED COMPLEXES OF S-TETRAZINE WITH HE AND AR [J].
HAYNAM, CA ;
BRUMBAUGH, DV ;
LEVY, DH .
JOURNAL OF CHEMICAL PHYSICS, 1984, 80 (06) :2256-2264
[24]   SPECTROSCOPY AND PHOTOPHYSICS OF ORGANIC CLUSTERS [J].
LEVY, DH ;
HAYNAM, CA ;
BRUMBAUGH, DV .
FARADAY DISCUSSIONS, 1982, 73 :137-151
[25]   QUASI-CLASSICAL TRAJECTORY STUDY OF COLLISIONAL ENERGY-TRANSFER IN TOLUENE SYSTEMS .1. ARGON BATH GAS - ENERGY-DEPENDENCE AND ISOTOPE EFFECTS [J].
LIM, KF .
JOURNAL OF CHEMICAL PHYSICS, 1994, 100 (10) :7385-7399
[26]   QUASI-CLASSICAL TRAJECTORY STUDY OF COLLISIONAL ENERGY-TRANSFER IN TOLUENE SYSTEMS .2. HELIUM BATH GAS - ENERGY AND TEMPERATURE DEPENDENCES, AND ANGULAR-MOMENTUM TRANSFER [J].
LIM, KF .
JOURNAL OF CHEMICAL PHYSICS, 1994, 101 (10) :8756-8767
[27]   INTERMOLECULAR VIBRATIONS OF THE 2,3-DIMETHYLNAPHTHALENE - AR VAN-DER-WAALS COMPLEX - EXPERIMENT AND QUANTUM 3-DIMENSIONAL CALCULATIONS [J].
MANDZIUK, M ;
BACIC, Z ;
DROZ, T ;
LEUTWYLER, S .
JOURNAL OF CHEMICAL PHYSICS, 1994, 100 (01) :52-62
[28]   QUANTUM 3-DIMENSIONAL CALCULATION OF ENDOHEDRAL VIBRATIONAL LEVELS OF ATOMS INSIDE STRONGLY NONSPHERICAL FULLERENES - NE-AT-C-70 [J].
MANDZIUK, M ;
BACIC, Z .
JOURNAL OF CHEMICAL PHYSICS, 1994, 101 (03) :2126-2140
[29]   VANDERWAALS VIBRATIONAL-STATES OF ATOM LARGE MOLECULE COMPLEXES BY A 3D DISCRETE VARIABLE REPRESENTATION METHOD - NAPHTHALENE AR [J].
MANDZIUK, M ;
BACIC, Z .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (09) :7165-7178
[30]   QUANTUM CALCULATION OF VIBRATIONAL-STATES IN THE ANILINE ARGON VANDERWAALS CLUSTER [J].
PARNEIX, P ;
HALBERSTADT, N ;
BRECHIGNAC, P ;
AMAR, FG ;
VANDERAVOIRD, A ;
VANBLADEL, JWI .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (04) :2709-2719