Determination of the intermolecular potential energy surface for (HCl)2 from vibration--rotation--tunneling spectra.
نویسندگان
چکیده
An accurate and detailed semiempirical intermolecular potential energy surface for (HCl)2 has been determined by a direct nonlinear least-squares fit to 33 microwave, far-infrared and near-infrared spectroscopic quantities using the analytical potential model of Bunker et al. [J. Mol. Spectrosc. 146, 200 (l99l)] and a rigorous four-dimensional dynamical method (described in the accompanying paper). The global minimum (De= -692 cm-1) is located near the hydrogen-bonded L-shaped geometry (R=3.746 angstroms, theta1=9 degrees, theta2=89.8 degrees, and phi=180 degrees). The marked influence of anisotropic repulsive forces is evidenced in the radial dependence of the donor-acceptor interchange tunneling pathway. The minimum energy pathway in this low barrier (48 cm-1) process involves a contraction of 0.1 angstroms in the center of mass distance (R) at the C2h symmetry barrier position. The new surface is much more accurate than either the ab initio formulation of Bunker et al. or a previous semiempirical surface [J. Chem. Phys. 78, 6841 (1983)].
منابع مشابه
Measurement of the v8 intermolecular vibration of (D,O), by tunable far infrared laser spectroscopy
The first accurate measurement of an intermolecular vibration of the water dimer is reported. Five vibration-rotation-tunneling (VRT) bands of the perdeuterated isotope, located near 84 cm-’ , have been assigned to the A 1 /E/B, tunneling components of the K, = O-0 and K, = l-0 subbands. The vibration involves large amplitude motion of the hydrogen bond acceptor and is assigned as the vs accept...
متن کاملVibration--rotation--tunneling dynamics calculations for the four-dimensional (HCl)2 system: a test of approximate models.
Several commonly used approximate methods for the calculation of vibration--rotation--tunneling spectra for (HCl)2 are described. These range from one-dimensional models to an exact coupled four-dimensional treatment of the intermolecular dynamics. Two different potential surfaces were employed--an ab initio and our ES1 experimental surface (determined by imbedding the four-dimensional calculat...
متن کاملAb initio prediction of the vibration-rotation-tunneling spectrum of HCl–„H2O...2
Quantum calculations of the vibration-rotation-tunneling ~VRT! levels of the trimer HCl–~H2O!2 are presented. Two internal degrees of freedom are considered—the rotation angles of the two nonhydrogen-bonded ~flipping! hydrogens in the complex—together with the overall rotation of the trimer in space. The kinetic energy expression of van der Avoird et al. @J. Chem. Phys. 105, 8034 ~1996!# is use...
متن کاملFar infrared vibration-rotation-tunneling spectroscopy and internal dynamics of methane--water: A prototypical hydrophobic system
Thirteen vibration-rotation-tunneling (VRT) bands of the CH4-H,O complex have been measured in the range from 18 to 35.5 cm-’ using tunable far infrared laser spectroscopy. The ground state has an average center of mass separation of 3.70 A and a stretching force constant of 1.52 N/m, indicating that this complex is more strongly bound than Ar-H,O. The eigenvalue spectrum has been calculated wi...
متن کاملFar-infrared vibration-rotation-tunneling spectroscopy of Ar-NH3: Intermolecular vibrations and effective angular potential energy surface
Two new intermolecular vibration-rotation-tunneling (VRT) bands of Ar-NH3 have been measured using tunable far infrared laser spectroscopy. We have unambiguously assigned these and a previously measured FIR band [ Gwo et al., Mol. Phys. 71,453 ( 1990) ] as II ( l,,n = 0) +B(O,,n = 0), 2( l,,n = 0) +-Z(O,,n = 0), and B(O,,n = 1) +-Z(O,,n = 0). The three upper states of these are found to be stro...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید
ثبت ناماگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید
ورودعنوان ژورنال:
- The Journal of chemical physics
دوره 103 3 شماره
صفحات -
تاریخ انتشار 1995