Phosphorus-31 and selenium-77 nuclear magnetic resonance spectra of sulphur- or arsenic-substituted derivatives of tetraphosphorus triselenide; fitting of chemical shifts and coupling constants to molecular parameters for cage compounds containing a phosphorus–selenium–phosphorus linkage
Abstract
Phosphorus-31 and selenium-77 n.m.r. spectra have been measured and assigned to give chemical shifts and coupling constants for PP3S2Se (1), PP3SSe2(2), PP2AsSe3(4), PPAs2Se3(5), PAs3Se3(6), AsP3Se3(7), AsP2AsSe3(8), and AsPAs2Se3(9), where the symbol written first in each formula represents the apical phosphorus or arsenic atom. In each case, the presence of 77Se in natural abundance allowed the molecule without 77Se, and molecules with one 77Se atom, to be studied. For molecules containing both basal phosphorus and basal arsenic atoms, spectra were seen of isotopomers with the 77Se atom connected either to basal phosphorus [(4b), (5b), (8b), and (9b)] or to basal arsenic [(4c), (5c), (8c), and (9c)]. Complete chemical shift and coupling data were thus obtained for, inter alia, five molecules [(1b), (2b), (3b), (4b), and (5b)] containing a 31P–77Se–31P linkage; the three shifts and three couplings which characterise this linkage could be fitted statistically by linear relationships involving two molecular parameters. Multiple regression analysis showed that two other coupling constants involving the basal phosphorus atom PAcould be fitted to these same molecular parameters.