Synthesis and crystal structure of [Co(CO)4(H7Si8O12)]. A new type of monosubstituted octanuclear silasesquioxane with a silicon–cobalt bond
Abstract
Reaction of octacarbonyldicobalt [Co2(CO)8] with octahydrosilasesquioxane H8Si8O12 in toluene leads to [Co(CO)4(H7Si8O12)], a new monosubstituted, octanuclear silasesquioxane with a silicon–cobalt bond. The product has been analysed by 1H, 13C, 29Si NMR and IR spectroscopies, mass spectrometry and microanalysis. The crystal structure of [Co(CO)4(H7Si8O12)] has been determined by single-crystal X-ray diffraction and is compared with the structures of H8Si8O12, [Co(CO)4(SiCl3)] and [Co(CO)4(SiF3)]. The H7Si8O12 fragment exhibits structural distortions consistently around, and originating from the Si atom to which the Co(CO)4 fragment binds. The remaining part of the cage essentially retains C3 symmetry, but is, nevertheless, in principle closer to the ideal Oh symmetry for this type of cage, than is crystalline H8Si8O12, for which a non-crystallographic molecular symmetry of Th is present. The comparison of the structures of the Co(CO)4 fragments shows that these are consistently distorted and deviate from ideal C3v symmetry. The distortions are essentially of the same kind in the three compounds and differ only in magnitude. The Si–Co distance in [Co(CO)4(H7Si8O12)] is 2.285 Å. The experimental findings have been compared with extended-Hückel molecular orbital calculations. Interaction between the Co(dz2) and the Si(Pz) orbitals leads to the bond between the two fragments. Overlap population analysis indicates small but significant bonding interaction between Si and Ceq and antibonding interaction between the Co and the nearest O(Si). Fractional molecular orbital analysis indicates that the electronic structure of [Co(CO)4(H7Si8O12)] consists of three parts: orbitals belonging only to one of the two fragments and orbitals shared by both fragments. The highest-occupied molecular orbital (HOMO) of [Co(CO)4(H7Si8O12)] consists of oxygen lone pairs localised on H7Si8O12. The lowest-unoccupied molecular orbital (LUMO) is identical with the LUMO of Co(CO)4 and the first electronic transitions observed in the near UV are of H7Si8O12(oxygen lone pair) to Co(CO)4 fragment charge-transfer type.