Journal of the American Chemical Society · 2005 · 63 citations · 60 references
The synthesis of a variety of benzophosphepine complexes [R = Ph, t-Bu, Me; ML(n )()= W(CO)(5), Mo(CO)(5), Cr(CO)(5), Mn(CO)(2)Cp] by two successive hydrophosphinations of 1,2-diethynylbenzene is discussed in detail. The first hydrophosphination step proceeds at ambient temperature without additional promoters, and subsequent addition of base allows full conversion to benzophosphepines. Novel benzeno-1,4-diphosphinanes were isolated as side products. The benzophosphepine complexes themselves serve as convenient phosphinidene precursors at elevated, substituent-dependent temperatures (>55 degrees C). Kinetic and computational analyses support the proposal that the phosphepine-phosphanorcaradiene isomerization is the rate-determining step. In the absence of substrate, addition of the transient phosphinidene to another benzophosphepine molecule is observed, and addition to 1,2-diethynylbenzene furnishes a delicate bidentate diphosphirene complex.
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G. te Velde, F. Matthias Bickelhaupt, Evert Jan Baerends et al. · Journal of Computational Chemistry · 2001 · 9.9K citations
Engineering, Chemical Analysis, Theoretical Inorganic Chemistry +17
A synthetic method for formyl→ethynyl conversion (RCHO→RCCH or RCCR′)
E. J. Corey, P.L. Fuchs · Tetrahedron Letters · 1972 · 1.6K citations