
Organometallics p. 2247 - 2259 (1991)
Update date:2022-08-11
Topics:
Mul, Wilhelmus P.
Elsevier, Cornelis J.
Polm, Louis H.
Vrieze, Kees
Zoutberg, Martin C.
Heijdenrijk, Dick
Stam, Casper H.
The dinuclear compounds Ru2(CO)6[R1CH2CC(H)NR2] (2a-e) and Ru2(CO)6[R1C=C(H)CH2NR2] (3a,b,d) are the first isolable products during thermal reactions of Ru3(CO)12 with 1-aza 1,3-dienes R1C(H)=C-(H)C(H)=NR2(R1,R2-MAD; R1, R2 = CH3, i-Pr (1a), CH3, c-Hex (1b), CH3, t-Bu (1c), C6H5, i-Pr (1d), C6H5, T-Bu (1e)). Both primary products 2 and 3 contain an isomerized MAD ligand that is part of a four-(2) or five-membered (3) azaruthenacycle. The molecular structure of 3a has been solved by X-ray crystallography: space group P1?, with a = 22.511 (4) ?, b = 13.740 (3) ?, c = 12.443 (2) ?, α = 103.21 (1)?, β = 113.00 (1)?, γ = 77.71 (1)?, V = 851.3 ?, Z = 2, and R = 0.027 (Rw = 0.042), for 2540 observed reflections. Compound 3a contains a formally 6-electron donating enyl-amido ligand and is μ-N,-σ-Cβη2-C=C-coordinated to a sawhorse Ru2(CO)6 core. In solution both 2 and 3 are stereochemically nonrigid, due to windshield wiper motions of the asymmetrically bridged amido ligands. This process is more facile for 2 (ΔG? ≈ 35 kJ mol-1) than for 3 (ΔG? 62 kJ mol-1), and the ΔG? value for 3 was shown to be independent of the R1 and R2 substituents. In refluxing heptane 2 and 3 are converted into the linear 66-electron cluster Ru4(CO)10[R1C=C(H)C(H)=NR2] 2 (5a-e), albeit conversion of 2 into 5 proceeded very slowly and incompletely. Conversion of 3 into 5 proceeds via the intermediacy of (μ-H)Ru2(CO)5[R1C= C(H)C(H)=NR2] (4), which air-sensitive compound could be observed and isolated for R1, R2 = C6H5, i-Pr (4d). Reaction of 3a,b with CH,R2-MAD or crotonaldehyde in heptane at 90°C results in the formation Of Ru2(CO)6[CH2CC(H)C(H)=NR2] (6a,b). During this conversion the coordinated ligand is dehydrogenated whereas the added substrate acts as a hydrogen acceptor. For crotonaldehyde it was shown that the olefin moiety was hydrogenated chemoselectively. The formation of 2 and 3 out of Ru3(CO)12 and R1,R2-MAD and their conversion into 4-6 are discussed.
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