4.7 Article

Structures and heats of formation of the neutral and ionic PNO, NOP, and NPO systems from electronic structure calculations

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 128, Issue 16, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.2902983

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High level ab initio electronic structure calculations using the coupled cluster CCSD(T) method with augmented correlation-consistent basis sets extrapolated to the complete basis set limit have been performed on the PNO, NOP, and NPO isomers and their corresponding anions and cations. Geometries for all species were optimized up through the aug-cc-pV(Q+d)Z level and vibrational frequencies were calculated with the aug-cc-pV(T+d)Z basis set. The most stable of the three isomers is NPO and it is predicted to have a heat of formation of 23.3 kcal/mol. PNO is predicted to be only 1.7 kcal/mol higher in energy. The calculated adiabatic ionization potential of NPO is 12.07 eV and the calculated adiabatic electron affinity is 2.34 eV. The calculated adiabatic ionization potential of PNO is 10.27 eV and the calculated adiabatic electron affinity is only 0.24 eV. NOP is predicted to be much higher in energy by 29.9 kcal/mol. The calculated rotational constants for PNO and NPO should allow for these species to be spectroscopically distinguished. The adiabatic bond dissociation energies for the P-N, P-O, and N-O bonds in NPO and PNO are the same within similar to 10 kcal/mol and fall in the range of 72-83 kcal/mol. (c) 2008 American Institute of Physics.

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