In this manuscript, we present an approach for computing tunneling splittings for large amplitude motions. The core of the approach is a solution of an effective one-dimensional Schrödinger equation with an effective mass and an effective potential energy surface composed of electronic and harmonic zero-point vibrational energies of small amplitude motions in the molecule. The method has been shown to work in cases of three model motions: nitrogen inversion in ammonia, single proton transfer in malonaldehyde, and double proton transfer in the formic acid dimer. In the current work, we also investigate the performance of different DFT and post-Hartree–Fock methods for prediction of the proton transfer tunneling splittings, quality of the eff...
Hammer T, Manthe U. Intramolecular proton transfer in malonaldehyde: Accurate multilayer multi-confi...
Zero-point and excited level splittings due to double-proton tunneling are calculated for porphycene...
We illustrate how path-integral molecular dynamics can be used to calculate ground-state tunnelling ...
Abstract: We present a new algorithm for carrying out large-curvature tunneling calculations that ac...
Author Institution: University of Wisconsin-Madison, Madison, Wisconsin 53706Formic Acid Dimer (FAD)...
1. V. K. Babamov, Chem, Phys. Lett. 217, 254(1994) 2. V.K. Babamov and R. A. Marcus, J. Chem. Phys. ...
The double proton transfer reaction of the isolated formic acid dimer has been investigated within t...
Author Institution: Institut f. Physikalische Chemie, Universitat Gottingen, Tammannstr. 6, D-37077 ...
Author Institution: University of Wisconsin-Madison, Madison, Wisconsin 53706Formic Acid Dimer (FAD)...
Author Institution: CASA theory of tunneling splitting in hydrogen-bonded systems and hydrogen tunne...
Zero-point tunneling splittings are calculated, and the values are compared with the experimentally ...
Various aspects of the intramolecular proton transfer in malonaldehyde have been investigated theore...
$^{1}$ D. D. Nelson, Jr., G. T. Fraser and W. Klemperer, J. Chem. Phys. 83, 6201-6208 (1985).Author ...
Quantum calculations of the ground vibrational state tunneling splitting of H-atom and D-atom transf...
Quantum calculations of the ground vibrational state tunneling splitting of H-atom and D-atom transf...
Hammer T, Manthe U. Intramolecular proton transfer in malonaldehyde: Accurate multilayer multi-confi...
Zero-point and excited level splittings due to double-proton tunneling are calculated for porphycene...
We illustrate how path-integral molecular dynamics can be used to calculate ground-state tunnelling ...
Abstract: We present a new algorithm for carrying out large-curvature tunneling calculations that ac...
Author Institution: University of Wisconsin-Madison, Madison, Wisconsin 53706Formic Acid Dimer (FAD)...
1. V. K. Babamov, Chem, Phys. Lett. 217, 254(1994) 2. V.K. Babamov and R. A. Marcus, J. Chem. Phys. ...
The double proton transfer reaction of the isolated formic acid dimer has been investigated within t...
Author Institution: Institut f. Physikalische Chemie, Universitat Gottingen, Tammannstr. 6, D-37077 ...
Author Institution: University of Wisconsin-Madison, Madison, Wisconsin 53706Formic Acid Dimer (FAD)...
Author Institution: CASA theory of tunneling splitting in hydrogen-bonded systems and hydrogen tunne...
Zero-point tunneling splittings are calculated, and the values are compared with the experimentally ...
Various aspects of the intramolecular proton transfer in malonaldehyde have been investigated theore...
$^{1}$ D. D. Nelson, Jr., G. T. Fraser and W. Klemperer, J. Chem. Phys. 83, 6201-6208 (1985).Author ...
Quantum calculations of the ground vibrational state tunneling splitting of H-atom and D-atom transf...
Quantum calculations of the ground vibrational state tunneling splitting of H-atom and D-atom transf...
Hammer T, Manthe U. Intramolecular proton transfer in malonaldehyde: Accurate multilayer multi-confi...
Zero-point and excited level splittings due to double-proton tunneling are calculated for porphycene...
We illustrate how path-integral molecular dynamics can be used to calculate ground-state tunnelling ...