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Reactions, Hydrogenation and Isomerization of Unsaturated Esters with a Rhodium(I)-Perchlorato Complex

  • Published : 1986.12.20

Abstract

The isolated products from the reactions of $Rh(ClO_4)(CO)(PPh_3)_2$ (1) with CH_2$ = $CHCO_2C_2H_5$ (2) and trans-$CH_3CH$ = $CHCO_2C_2H_5$ (3) contain 80∼ 90% of $[Rh(CH_2 = CHCO_2C_2H_5)(CO)(PPh_3)_2]ClO_4$ (4) and [Rh(trans-$CH_3CH = CHCO_2C_2H_5(CO)(PPh_3)_2]ClO_4$ (5), respectively where 2 and 3 seem to be coordinated through the carbonyl oxygen. It has been found that complex 1 catalyzes the isomerization of $CH_2 = CH(CH_2)_8CO_2C_2H_5$ (6) to $CH_3(CH_2)_nCH = CH(CH_2)_{7-n}CO_2C_2H_5$ (n = 0∼7) under nitrogen at 25$^{\circ}C$. The isomerization of 6 is slower than that of $CH_2 = CH(CH_2)_9CH_3$ to $CH_3(CH_2)_nCH$ = $CH(CH_2)_{8-n}CH_3$ (n = 0∼8), which is understood in terms of the interactions between the carbonyl oxygen of 6 and the catalyst. It has been also observed that complex 1 catalyzes the hydrogenation of 2, 3, 6, trans-$C_6H_5CH = CHCO_2C_2H_5$ (7), $CH_3(CH_2)_7CH = CH(CH_2)_7CO_2C_2H_5$ (8) and $CH_2 = CH(CH_2)_9CH_3$ (9), and the isomerization (double bond migration) of 6 and 9 under hydrogen at 25$^{\circ}C$. The interactions between the carbonyl oxygen of the unsaturated esters and the catalyst affect the hydrogenation in such a way that the hydrogenation of the unsaturated esters becomes slower than that of simple olefins.

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References

  1. Angew. Chem. Int. Ed. Engl. v.10 J. Peone Jr.;L. Vaska
  2. Inorg. Chem. v.24 S.H. Park;H.-K. Park;C.S. Chin
  3. J. Organomet. Chem. v.290 M.K. Lee;I.B. Kim;C.S. Chin
  4. Polyhedron v.2 T. Kwon;J.C. Woo;C.S. Chin
  5. J. Polymer Sci. Chem. Ed. v.20 J.C. Woo;S.H. Kim;C.S. Chin
  6. Polyhedron v.3 I.B. Kim;C.S. Chin
  7. J. Park;C.S. Chin
  8. Bull. Korean Chem. Soc. v.5 H.M. Jeong;C.S. Chin
  9. Inorg. Chem. v.15 J. Brady;B.R. Flynn;G.L. Geoffroy;H.B. Gray;J. Peone, Jr.;L. Vaska