Leibniz-Institut für Katalyse e.V. an der Universität Rostock, Albert-Einstein-Strasse 29a, D-18059 Rostock, Germany.
J Am Chem Soc. 2012 Sep 26;134(38):15979-91. doi: 10.1021/ja3070649. Epub 2012 Sep 18.
The reaction of the low valent metallocene(II) sources Cp'(2)Ti(η(2)-Me(3)SiC(2)SiMe(3)) (Cp' = η(5)-cyclopentadienyl, 1a or η(5)-pentamethylcyclopentadienyl, 1b) with different carbodiimide substrates RN═C═NR' 2-R-R' (R = t-Bu; R' = Et; R = R' = i-Pr; t-Bu; SiMe(3); 2,4,6-Me-C(6)H(2) and 2,6-i-Pr-C(6)H(3)) was investigated to explore the frontiers of ring strained, unusual four-membered heterometallacycles 5-R. The product complexes show dismantlement, isomerization, or C-C coupling of the applied carbodiimide substrates, respectively, to form unusual mono-, di-, and tetranuclear titanium(III) complexes. A detailed theoretical study revealed that the formation of the unusual complexes can be attributed to the biradicaloid nature of the unusual four-membered heterometallacycles 5-R, which presents an intriguing situation of M-C bonding. The combined experimental and theoretical study highlights the delicate interplay of electronic and steric effects in the stabilization of strained four-membered heterometallacycles, accounting for the isolation of the obtained complexes.
研究了低价茂金属(II)源 Cp'(2)Ti(η(2)-Me(3)SiC(2)SiMe(3))(Cp'=η(5)-环戊二烯基,1a 或 η(5)-五甲基环戊二烯基,1b)与不同的碳二亚胺底物 RN═C═NR'2-R-R'(R=t-Bu;R'=Et;R=R'=i-Pr;t-Bu;SiMe(3);2,4,6-Me-C(6)H(2)和 2,6-i-Pr-C(6)H(3))的反应,以探索具有环状张力的不寻常四元杂金属环 5-R 的边界。所得到的产物配合物分别表现出所应用的碳二亚胺底物的解体、异构化或 C-C 偶联,从而形成不寻常的单核、二核和四核钛(III)配合物。详细的理论研究表明,不寻常配合物的形成可归因于不寻常四元杂金属环 5-R 的双自由基性质,这呈现出有趣的 M-C 键合情况。综合实验和理论研究突出了电子和空间效应在稳定应变四元杂金属环中的微妙相互作用,解释了所获得配合物的分离。