Title of article
Catalytic cyclopropanation of olefins using copper(I) diphosphinoamines
Author/Authors
Ritu Ahuja، نويسنده , , Ashoka G. Samuelson، نويسنده ,
Issue Information
دوفصلنامه با شماره پیاپی سال 2009
Pages
8
From page
1153
To page
1160
Abstract
Catalytic cyclopropanation reactions of olefins with ethyl diazoacetate were carried out using copper(I) diphosphinoamine (PPh2)2N(R) (R = iPr, H, Ph and –CH2–C6H4–CHdouble bond; length as m-dashCH2) complexes at 40 °C in chloroform. High yields of the cyclopropanes were obtained in all cases. The rate of the reaction was influenced by the nuclearity of the complex and the binding mode of the ligand which was either bridging or chelating. Comparison of isostructural complexes shows that the rate follows the order R = iPr > H > Ph, where R is the substituent on the N. However, cyclopropane formation versus dimerization of the carbene, and trans to cis ratios of cyclopropane was similar in all cases. The nearly identical selectivity for different products formed was indicative of a common catalytic intermediate. A labile “copper–olefin” complex which does not involve the phosphine or the counterion is the most likely candidate. The differences in the reaction rates for different complexes are attributed to differences in the concentration of the catalytically active species which are in equilibrium with the catalytically inactive copper–phosphinoamine complex. To test the hypothesis a diphosphinoamine polymer complexed to copper(I) was used as a heterogeneous catalyst. Leaching of copper(I) and deactivation of the catalyst confirmed the proposed mechanism.
Keywords
Catalysis , Cyclopropanation , Diphosphinoamine , Olefin , Ethyl diazoacetate , Copper(I)
Journal title
Journal of Organometallic Chemistry
Serial Year
2009
Journal title
Journal of Organometallic Chemistry
Record number
1376953
Link To Document