Rovibronic energy levels and properties of the Br(2P)-HCN complex were obtained from three-dimensional calculations, with HCN kept linear and the CN bond frozen. All diabatic states that correlate to the 2P3/2 and 2P1/2 states of the Br atom were included and spin-orbit coupling was taken into account. The 3 3 matrix of diabatic potential surfaces was taken from the preceding paper (paper 1). In agreement with experiment, we found two linear isomers, Br-NCH and Br-HCN. The calculated binding energies are very similar: D0) 352.4 cm-1 and D0) 349.1 cm-1, respectively. We established, also in agreement with experiment, that the ground electronic state of Br-NCH has j¿j) (1/2) and that Br-HCN has a ground state with j¿j) (3/2), where the quant...
In the present work, two novel Br-BTN and CN-BTN compounds have been investigated theoretically. We ...
In the present work, two novel Br-BTN and CN-BTN compounds have been investigated theoretically. We ...
Lenzen T, Eisfeld W, Manthe U. Vibronically and spin-orbit coupled diabatic potentials for X(2P) + C...
Item does not contain fulltextRovibronic energy levels and properties of the Br(P-2)-HCN complex wer...
The three adiabatic potential surfaces of the Br(P-2)-HCN complex that correlate to the P-2 ground s...
Contains fulltext : 35247.pdf (publisher's version ) (Open Access)The three adiaba...
Bound energy levels and properties of the Cl((2)p)-HF complex were obtained from full three-dimensio...
Contains fulltext : 36120.pdf (publisher's version ) (Closed access)Bound energy l...
A four-dimensional intermolecular potential-energy surface has been calculated for the HCN-HCl compl...
A four-dimensional intermolecular potential-energy surface has been calculated for the HCN-HCl compl...
A four-dimensional intermolecular potential-energy surface has been calculated for the HCN-HCl compl...
Rotationally resolved infrared spectra are reported for the X–HCN (X = Cl, Br, I) binary complexes s...
Calculations are presented for the molecule HC2N and its geometrical isomers. The structures, harmon...
Lenzen T, Eisfeld W, Manthe U. Vibronically and spin-orbit coupled diabatic potentials for X(2P) + C...
Rotationally resolved infrared spectra are reported for the X–HCN (X = Cl, Br, I) binary complexes s...
In the present work, two novel Br-BTN and CN-BTN compounds have been investigated theoretically. We ...
In the present work, two novel Br-BTN and CN-BTN compounds have been investigated theoretically. We ...
Lenzen T, Eisfeld W, Manthe U. Vibronically and spin-orbit coupled diabatic potentials for X(2P) + C...
Item does not contain fulltextRovibronic energy levels and properties of the Br(P-2)-HCN complex wer...
The three adiabatic potential surfaces of the Br(P-2)-HCN complex that correlate to the P-2 ground s...
Contains fulltext : 35247.pdf (publisher's version ) (Open Access)The three adiaba...
Bound energy levels and properties of the Cl((2)p)-HF complex were obtained from full three-dimensio...
Contains fulltext : 36120.pdf (publisher's version ) (Closed access)Bound energy l...
A four-dimensional intermolecular potential-energy surface has been calculated for the HCN-HCl compl...
A four-dimensional intermolecular potential-energy surface has been calculated for the HCN-HCl compl...
A four-dimensional intermolecular potential-energy surface has been calculated for the HCN-HCl compl...
Rotationally resolved infrared spectra are reported for the X–HCN (X = Cl, Br, I) binary complexes s...
Calculations are presented for the molecule HC2N and its geometrical isomers. The structures, harmon...
Lenzen T, Eisfeld W, Manthe U. Vibronically and spin-orbit coupled diabatic potentials for X(2P) + C...
Rotationally resolved infrared spectra are reported for the X–HCN (X = Cl, Br, I) binary complexes s...
In the present work, two novel Br-BTN and CN-BTN compounds have been investigated theoretically. We ...
In the present work, two novel Br-BTN and CN-BTN compounds have been investigated theoretically. We ...
Lenzen T, Eisfeld W, Manthe U. Vibronically and spin-orbit coupled diabatic potentials for X(2P) + C...