The S-S Bridge: A Mixed Experimental-Computational Estimation of the Equilibrium Structure of Diphenyl Disulfide

  • Chemphyschem. 2019 Feb 4;20(3):366-373. doi: 10.1002/cphc.201800973.
Jean Demaison  1 Natalja Vogt  1  2 Rizalina Tama Saragi  3 Marcos Juanes  3 Heinz Dieter Rudolph  1 Alberto Lesarri  3
Affiliations
  • 1. Section of Chemical Information Systems, University of Ulm, 89069, Ulm, Germany.
  • 2. Department of Chemistry, Lomonosov Moscow State University, 119992, Moscow, Russia.
  • 3. Departamento de Química Física y Química Inorgánica - IU CINQUIMA, Facultad de Ciencias, Universidad de Valladolid, Paseo de Belén, 7, 47011, Valladolid, Spain.
Abstract

The disulfide bridge (-S-S-) is an important structural motif in organic and protein chemistry, but only a few accurate equilibrium structures are documented. We report the results of supersonic-jet microwave spectroscopy experiments on the rotational spectra of diphenyl disulfide, C6 H5 -S-S-C6 H5 (including all 13 C and 34 S monosubstituted isotopologues), and the determination of the equilibrium structure by the mixed estimation (ME) method. A single conformation of C2 symmetry was observed in the gas phase. This disulfide is a challenging target since its structure is determined by 34 independent parameters. Additionally, ab initio calculations revealed the presence of three low-frequency vibrations (<50 cm-1 ) associated to phenyl torsions which would prevent the calculation of an accurate force field. For this reason, instead of the semiexperimental method, we used the mass-dependent (rm ) method to fit the structural parameters concurrently to moments of inertia and predicate parameters, affected with appropriate uncertainties. The predicates were obtained by high-level quantum-chemical computations. A careful analysis of the results of different fits and a comparison with the ab initio optimizations confirms the validity of the used methods, providing detailed structural information on the title compound and the disulfide bridge.

Keywords
computational chemistry; disulfide; equilibrium structure; rotational spectroscopy; supersonic jets.
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