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Water clustering in the presence of a CO2 molecule

✍ Scribed by C.N. Ramachandran; Eli Ruckenstein


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

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✦ Synopsis


The gas-phase geometries of the complexes CWn formed between one CO 2 molecule and various numbers n of water molecules (n = 1-8) have been examined using the Møller-Plesset perturbation (MP2) and the density functional methods coupled with the aug-cc-pVDZ basis set. For a given number of water molecules, the latter aggregate in a stable complex with strong hydrogen bonds on one side of the CO 2 molecule. The reported stabilization energies associated with the clustering of CO 2 and water molecules have been corrected for the basis set superposition error. van der Waals and OAHÁ Á ÁO C interactions bind the water and CO 2 molecules in the complexes. It was also found that the water moieties of some of the optimized structures of the CW4ACW8 complexes resemble the water moieties of the well known gas hydrates. The Gibbs free energy changes for clustering of molecules as stable complexes were calculated at various temperatures. These calculations revealed that their formation is spontaneous at sufficiently low temperatures. The stretching frequency of the CO 2 in the complex increases and that of the water molecules attached to the CO 2 molecule decreases compared to their free states. These shifts depend on the strength of the OAHÁ Á ÁO C interaction. The comparison between the stabilization energies of a number of complexes CO 2 (H 2 O) n , indicated that their stabilization energies are approximately equal to the sum of the stabilization energies of two moieties of CO 2 (H 2 O) n/2 provided that their (H 2 O) n/2 are located on the opposite sides of CO 2 .


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