Protonation and protolysis of [Fe4(CO)12(CCH3)]− |
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Authors: | P.L. Bogdan K.H. Whitmire J.W. Kolis D.F. Shriver E.M. Holt |
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Affiliation: | Department of Chemistry, Northwestern University, Evanston, IL 60201 U.S.A.;Department of Chemistry, Oklahoma State University, Stillwater, OK 74078 U.S.A. |
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Abstract: | ![]() The reaction of [Fe4(CO)12(CCH3)]? with HSO3CF3 in CH2Cl2 solution yields the compound HFe4(CO)12(CCH3), which was characterized chemically, spectroscopically and by single crystal X-ray diffraction. This compound retains the approximately tetrahedral 4-iron framework characteristic of the parent anion and protonation appears to have occurred on an FeFe bond. In neat HSO3CF3, infrared and NMR spectroscopic evidence indicates that another proton adds to the metal framework producing [H2Fe4(CO)12(CCH3]+. On long standing, this solution evolves CO, and H2, and small amounts of CH4 and C2H6. On the time scale of the experiments described here the latter two gases are obtained in an approximately ratio. Deuterated acid leads to mixtures of the various isotopomers of CH4 but the ethane is CD3CH3. Possible mechanisms for hydrocarbon production are discussed. |
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