Synthesis, structure and solid-state nuclear magnetic resonance studies of P-chiral (dicyclohexylaminosulfanyl)-[(–)-p-menthan-3-yloxy]phenylthioxophosphorane
Abstract
P-Chiral (Rp)(dicyclohexylaminosulfanyl)[(–)-p-menthan-3-yloxy]phenylthioxophosphorane 1 was synthesized by condensation of (Sp)(–)-p-menthlan-3-yl phenylthiophosphinate 2 and (H11C6)2NSBr. The reaction proceeds with retention of configuration at the chiral phosphorus centre. Compound 1 crystallized from chloroform–acetone or chloroform as two polymorphs in proportions depending on the solvent. X-Ray crystallography revealed that in the asymmetric part of the unit cell polymorph 1 contains two independent molecules with anti and syn geometry of the S
P–S–N fragment and polymorph 1′ contains only one independent molecule with anti geometry. Preliminary structural results were obtained by analysis of 31P cross-polarization magic angle spinning NMR spectra. The S
P–S bond angles, P–S and P
S bond lengths were established from the anisotropy Δδ and principal components of the chemical shift tensor, δ22 and δ33, respectively. Comparison of geometrical parameters obtained from solid-state NMR spectroscopy with those from X-ray diffraction analysis of single crystals confirms the accuracy of this approach. For the anti S
P–S–N conformation the S
P–S bond angle is smaller than the tetrahedral value, and the P–S bond length is 2.09 Å. The syn geometry is associated with a larger S
P–S valence angle and longer P–S bond. The trend towards planarity is explained in terms of a π contribution to the P–S single bond.
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