화학공학소재연구정보센터
Inorganic Chemistry, Vol.36, No.6, 994-1003, 1997
Reactivity of Cubane-Type ((Oc)(3)MFe(3)S(4)(Sr)(3))(3-) Clusters (M=mo,W) - Interconversion with Cuboidal (Fe3S4)(0) Clusters and Electron-Transfer
The title clusters, several examples of which have been reported earlier, have been prepared by two different methods and subjected to structural and reactivity studies. The compounds (Et(4)N)(3)[(OC)(3)MFe(3)S(4)(Smes)(3)]. MeCN (M = Mo/W) are isomorphous and crystallize in monoclinic space group P2(1)/n with a = 13.412(1)/13.297(1) Angstrom, b = 19.0380(1)/18.9376(3) Angstrom, c = 26.4210(1)/26.2949(1) Angstrom, beta = 97.87(1)/97.549(1)degrees, and Z = 4. The clusters contain long M-S (2.62/2.59 Angstrom) and M-Fe (3.22/3.19 Angstrom) bonds, consistent with the reported structure of [(OC)(3)MoFe3S4(SEt)(3)](3-) (3) Reaction of [(OC)(3)MoFe3S4(LS(3))](3-) (7) With CO in the presence of NaPF6 affords cuboidal [Fe3S4(LS(3))](3-) (9), also prepared in this laboratory by another route as a synthetic analogue of protein-bound [Fe3S4](0) clusters. The clusters [Fe3S4(SR)(3)](3-) (R = mes, Et), of limited stability, were generated by the same reaction. Treatment of 9 with [M(CO)(3)(MeCN)(3)] affords 7 and its M = W analogue. The clusters [(OC)(3)MFe(3)S(4)(SR)(3)](3-) form a four-member electron transfer series in which the 3- cluster can be once reduced (4-) and twice oxidized (2-, 1-) to afford clusters of the indicated charges. The correct assignment of redox couple to potential in the redox series of six clusters is presented, correcting an earlier misassignment of the redox series of 3. Carbonyl stretching frequencies are shown to be sensitive to cluster oxidation state, showing that the M sites and Fe3S4 fragments are electronically coupled despite the long bond distances. (LS(3) = 1,3,5-tris((4,6-dimethyl-3-mercaptophenyl)thio)-2,4,6-tris(p-tolylthio)benzenate(3-); mes = mesityl.).