Reaction of Cp2TiCl with RLi (R = —CH3, —C2H5, —n-C4H9, —s-C4H9, —t-C4H9) yields the thermally instable TiIII compounds Cp2TiR. Reaction of these compounds with 2,6-xylylisocyanide, phenylisocyanate or carbon dioxide results in insertion of these ligands into the Ti—alkyl bond with formation of iminoacyl, amido and carboxylato derivatives, respectively. In the reaction with ketones a pinacol-type dimerisation is observed
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reaction of Cp2TiCl with RLi (R = —CH3, —C2H5, —n-C4H9, —s-C4H9, —t-C4H9) yields the thermally insta...
Reaction of Cp2TiCl with RLi (R = —CH3, —C2H5, —n-C4H9, —s-C4H9, —t-C4H9) yields the thermally insta...
Reaction of Cp2TiCl with RLi (R = —CH3, —C2H5, —n-C4H9, —s-C4H9, —t-C4H9) yields the thermally insta...
Reaction of Cp2TiCl with RLi (R = —CH3, —C2H5, —n-C4H9, —s-C4H9, —t-C4H9) yields the thermally insta...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reaction of Cp2TiCl with RLi (R = —CH3, —C2H5, —n-C4H9, —s-C4H9, —t-C4H9) yields the thermally insta...
Reaction of Cp2TiCl with RLi (R = —CH3, —C2H5, —n-C4H9, —s-C4H9, —t-C4H9) yields the thermally insta...
Reaction of Cp2TiCl with RLi (R = —CH3, —C2H5, —n-C4H9, —s-C4H9, —t-C4H9) yields the thermally insta...
Reaction of Cp2TiCl with RLi (R = —CH3, —C2H5, —n-C4H9, —s-C4H9, —t-C4H9) yields the thermally insta...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with R´NC (R´ = o-CH3C6H4, 2,6-(CH3)2C6H3) give ...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...
Reactions of Cp2TiR (R = Cl, C6F5, C6H5, o-CH3C6H4) with CO give two types of products: terminally c...