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On the stabilization of the sulfate dianion by sulfur dioxide in the gas phase. Theoretical studies on structure and stability of SnO2n+2 anions, n = 1–4

✍ Scribed by Justin Chan; Friedrich Grein


Publisher
Elsevier
Year
2011
Tongue
English
Weight
938 KB
Volume
966
Category
Article
ISSN
2210-271X

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✦ Synopsis


The stabilization with respect to electron detachment of the sulfate dianion SO 2À 4 in gas phase by addition of SO 2 molecules is being studied. Geometries of SO 2À 4 (SO 2 ) n and SO 1À 4 (SO) n for n = 1-3 have been optimized using the B3PW91 method. The energies of the smaller clusters have been recalculated at the CCSD and CCSD(T) level based on the B3PW91 geometry. In the gas phase the sulfate monoanion is more stable than the dianion, the latter having an adiabatic electron detachment energy of À1.57 eV. However, with the addition of two SO 2 molecules the dianion becomes more stable by 0.38 eV (CCSD energies). The vertical electron detachment energy, while negative for the lone sulfate dianion (À1.26 eV), turns positive with the addition of a single SO 2 molecule (0.64 eV). Chemically bonded monoanions S 2 O 1À 6 and S 3 O 1À 8 , as well as dianions S 2 O 2À 6 , S 3 O 2À 8 and S 4 O 2À 10 , have been identified.