Using the reactant coordinate based time-dependent wave packet method, on the APW potential energy surface, the differential and integral cross sections of the Li+DF/HF(v=0, j=0, 1) reactions were calculated over the collision energy range from the threshold to 0.25 eV. The initial state-specified reaction rate constants of the title reaction were also calculated. The results indicate that, compared with the Li+DF reaction, the product LiF of Li+HF reaction is a little more rotationally excited but essentially similar. The initial rotational excitation from j=0 to 1 has little effect on the Li+DF reaction. However, the rotational excitation of DF does result in a little more rotationally excited product LiF. The different cross section of b...
The H/D + HCl/DCl (v0 = 0, j0 = 0) reactions were investigated in the gas phase using the reactant c...
The H/D + HCl/DCl (v0 = 0, j0 = 0) reactions were investigated in the gas phase using the reactant c...
The H/D + LiH/LiD (v= 0, j = 0) -> H-2/HD/D-2 + Li reactions are studied using the time-dependent wa...
The F+HCl and F+DCl reactions are studied by the time-dependent quantum wave packet method, using th...
The channel specific and initial state-selected reaction cross section and temperature-dependent rat...
A time-dependent quantum wave packet method is used to investigate the dynamics of the Li + H(D)Cl r...
We report a quantum dynamics study of the Li + HF → LiF + H reaction at low temperatures of interest...
The H/D + HCl/DCl (v(0) = 0, j(0) = 0) reactions were investigated in the gas phase using the reacta...
The dynamics of the title reaction are investigated using both time-dependent wave packet quantum sc...
State specific dynamics of the H + LiH+ reaction is theoretically investigated on its electronic gro...
State specific dynamics of the H + LiH+ reaction is theoretically investigated on its electronic gro...
A time-dependent wave packet dynamics study of the H + Li2 reaction has been performed on ...
State-to-state quantum dynamics calculations for the H + LiH (v = 0-1, j = 0) -> H-2 + Li reactions ...
Various processes can take place simultaneously in H2 + D2 collisions: four-center reaction yielding...
Various processes can take place simultaneously in H2 + D2 collisions: four-center reaction yielding...
The H/D + HCl/DCl (v0 = 0, j0 = 0) reactions were investigated in the gas phase using the reactant c...
The H/D + HCl/DCl (v0 = 0, j0 = 0) reactions were investigated in the gas phase using the reactant c...
The H/D + LiH/LiD (v= 0, j = 0) -> H-2/HD/D-2 + Li reactions are studied using the time-dependent wa...
The F+HCl and F+DCl reactions are studied by the time-dependent quantum wave packet method, using th...
The channel specific and initial state-selected reaction cross section and temperature-dependent rat...
A time-dependent quantum wave packet method is used to investigate the dynamics of the Li + H(D)Cl r...
We report a quantum dynamics study of the Li + HF → LiF + H reaction at low temperatures of interest...
The H/D + HCl/DCl (v(0) = 0, j(0) = 0) reactions were investigated in the gas phase using the reacta...
The dynamics of the title reaction are investigated using both time-dependent wave packet quantum sc...
State specific dynamics of the H + LiH+ reaction is theoretically investigated on its electronic gro...
State specific dynamics of the H + LiH+ reaction is theoretically investigated on its electronic gro...
A time-dependent wave packet dynamics study of the H + Li2 reaction has been performed on ...
State-to-state quantum dynamics calculations for the H + LiH (v = 0-1, j = 0) -> H-2 + Li reactions ...
Various processes can take place simultaneously in H2 + D2 collisions: four-center reaction yielding...
Various processes can take place simultaneously in H2 + D2 collisions: four-center reaction yielding...
The H/D + HCl/DCl (v0 = 0, j0 = 0) reactions were investigated in the gas phase using the reactant c...
The H/D + HCl/DCl (v0 = 0, j0 = 0) reactions were investigated in the gas phase using the reactant c...
The H/D + LiH/LiD (v= 0, j = 0) -> H-2/HD/D-2 + Li reactions are studied using the time-dependent wa...