A thorough theoretical investigation into complexes formed by interaction of dimethyl sulfoxide with two water molecules

Pham Ngoc Khanh, Nguyen Thi Viet Nga, Nguyen Tien Trung
Author affiliations

Authors

  • Pham Ngoc Khanh
  • Nguyen Thi Viet Nga
  • Nguyen Tien Trung

DOI:

https://doi.org/10.15625/2525-2321.2017-00511

Keywords:

Dimethyl sulfoxide, hydrogen bond, cooperativity

Abstract

A computational study of the stability and the cooperative effect of hydrogen bonds in the complexes of dimethyl sulfoxide and two water molecules was undertaken at the MP2/6-311++G(2d,2p) level of theory. The cooperative energies of obtained complexes are significantly negative, indicating that there is a large cooperativity between types of hydrogen bonds. The existence of the O−H∙∙∙O hydrogen bond present at dimer of water increases the stability of O−H∙∙∙O and C−H∙∙∙O hydrogen bonds in the ternary complexes compared to relevant binary complexes. By vibrational and NBO analyses, it is found that the magnitude of stretching frequency red shift of O−H bonds in the O−H···O hydrogen bonds is enhanced, whereas the extent of stretching frequency blue shift of C−H bonds in the C−H∙∙∙O hydrogen bonds is weakened when the cooperativity of hydrogen bonds happens in the ternary complexes. Obtained results of AIM analysis and stabilization energies indicate the larger contribution of the O−H∙∙∙O relative to the C−H∙∙∙O hydrogen bond to cooperativity.

Keywords. Dimethyl sulfoxide, hydrogen bond, cooperativity.

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References

G. Chalasinski, M. M. Szczesniak. State of the art and challenges of the ab initio theory of intermolecular interactions, Chem. Rev., 100(1), 4227-4252 (2000).

R. W. Saalfrank, H. Maid, A. Scheurer. Upramolekulare koordinationschemie-synergie von zufallsentdeckung und rationalem design, Angew. Chem. Int. Ed., 47, 8794-8824 (2008).

J. -M. Lehn. Supramolecular chemistry, Weinheim: Verlag-Chemie (1995).

S. J. Grabowski, Hydrogen bonding–New insights, In J. Leszczynski (Ed.), Series challenges and advances in computational chemistry and physics, New York, NY: Springer (2006).

N. T. Trung, N. P. Hung, T. T. Hue and M. T. Nguyen. Existence of both blue-shifting hydrogen bond and Lewis acid-base interaction in the complexes of carbonyls and thiocarbonyls with carbon dioxide, Phys. Chem. Chem. Phys., 13, 14033-14042 (2011).

N. T. H. Man, P. L. Nhan, V. Vien, D. T. Quang, N. T. Trung. An insight into C−H•••N hydrogen bond and stability of the complexes formed by trihalomethanes with ammonia and its monohalogenated derivatives, Int. J. Quantum Chem., 117(e25338), 1-9 (2017).

S. Nonin, J. L. Leroy, M. Gueron. Terminal base pairs of oligodeoxynucleotides: Imino proton exchange and fraying, Biochemistry, 34, 10652-10659 (1995).

P. N. Taylor, H. L. Anderson. Cooperative self-assembly of double-strand conjugated porphyrin ladders, J. Am. Chem. Soc., 121, 11538-11545 (1999).

J. Vieceli, I. Benjamin. Selective adsorption of DMSO from an aqueous solution at the surface of self-assembled monolayers, Langmuir, 19, 5383-5388 (2003).

E. Reverchon, I. De Marco. Supercritical antisolvent micronization of Cefonicid: thermodynamic interpretation of results, J. Supercrit. Fluids, 31(2), 207-215 (2004).

A. Weber, L.V. Yelash, T. Kraska. Effect of the phase behaviour of the solvent–antisolvent systems on the gas–antisolvent-crystallisation of paracetamol, J. Supercrit. Fluids, 33, 107-113 (2005).

B. Kirchner, M. Reiher. The secret of dimethyl sulfoxide-water mixtures. A quantum chemical study of 1DMSO-nwater clusters, J. Am. Chem. Soc., 124, 6206-6215 (2002).

Q. Li, X. An, B. Gong, J. Cheng. Cooperativity between O−H∙∙∙O and C−H∙∙∙O hydrogen bonds involving dimethyl sulfoxide-H2O-H2O complex, J. Phys Chem. A, 111, 10166-10169 (2007).

Q. Li, X. An, B. Gong, J. Cheng. Spectroscopic and theoretical evidence for the cooperativity between red-shift hydrogen bond and blue-shift hydrogen bond in DMSO aqueous solutions, Spectrochim Acta A, 69, 211-215 (2008).

M. J. Frisch, G. W. Trucks, H. B. Schlegel, G. E. Scuseria, M. A. Robb, J. R. Cheeseman, J. A. Pople, Gaussian 09 (Revision B.01), Wallingford, CT: Gaussian Inc (2009).

W. J. F. Bader. A quantum theory of molecular structure and its applications, Chem. ReV., 91, 893-928 (1991).

E. Espinosa, E. Molins, C. Lecomte. Hydrogen bond strengths revealed by topological analyses of experimentally observed electron densities, Chem. Phys. Lett., 285, 170-173 (1998).

E. D. Glendening, J. Badenhoop, K. A. E. Reed, J. E. Carpenter, J. A. Bohmann, C. M. Morales, F. Weinhold. GenNBO 5.G, Theoretical Chemistry Institute, University of Wisconsin: Madison, WI (2001).

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Published

30-10-2017

How to Cite

Khanh, P. N., Viet Nga, N. T., & Trung, N. T. (2017). A thorough theoretical investigation into complexes formed by interaction of dimethyl sulfoxide with two water molecules. Vietnam Journal of Chemistry, 55(5), 578. https://doi.org/10.15625/2525-2321.2017-00511

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