Abstract

Mono-demethylation of Cp 2Ti(CH 3) 2 in dichloromethane with 1 M equivalent of [η 5-(C 5H 4COOH)]Cr(CO) 2NO ( 5), [η 5-(C 5H 4COOH)]Cr(NO) 2X] (X = Cl 6, X = I 7) and [η 5-(C 5H 4COOH)]W(CO) 3CH 3 ( 8) gives Cp 2Ti(CH 3){[OC(O)C 5H 4]Cr(CO) 2NO} ( 9), Cp 2Ti(CH 3){[OC(O)C 5H 4]Cr(NO) 2Cl} ( 10), Cp 2Ti(CH 3){[OC(O)C 5H 4]Cr(NO) 2I} ( 11) and Cp 2Ti(CH 3){[OC(O)C 5H 4]W(CO) 3CH 3} ( 12), respectively. The structure of 10 has been solved by X-ray diffraction studies. One of the nitrosyl groups is located at the site away from the exocyclic carbonyl carbon of the Cp(Cr) ring with twist angle of 178.1°. All the data reveals that Cp 2Ti(CH 3)– is a strong electron-donating group. The opposite correlation was observed on the chemical shift assignments of C(2)–C(5) in compounds 5– 12, using HetCOR NMR spectroscopy, as compared with the NMR data of their ferrocene analogues. The electron density distribution in the cyclopentadienyl ring is discussed on the basis of 13C NMR data and those of 10 are compared with the calculations via density functional B3LYP correlation- exchange method.

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