Chemistry Reference
In-Depth Information
82. Storer, R.I., Takemoto, T., Jackson, P.S. et al. (2004) Multi-step application of immobilized
reagents and scavengers: a total synthesis of epothilone C. Chemistry - A European Journal, 10,
2529-2547.
83. Gul ´ n, O.P., Rabanal, F. and Giralt, E. (2006) Efcient preparation of proline N-carboxyanhy-
dride using polymer-supported bases. Organic Letters, 8, 5385-5388.
84. Liu, X., Yu, Z. and Verkade, J.G. (1999) Free and polymer-bound tricyclic azaphosphatranes HP
(RNCH 2 CH 2 ) 3 N þ : procatalysts in dehydrohalogenations and debrominations with NaH. The
Journal of Organic Chemistry, 64, 4840-4843.
85. Sabot, C., Kumar, K.A., Antheaume, C. and Mioskowski, C. (2007) Triazabicyclodecene: an
effective isotope exchange catalyst inCDCl 3 . The Journal of Organic Chemistry, 72, 5001-5004.
86. Parlow, J.J., Case, B.L. and South, M.S. (1999) High-throughput purification of solution-phase
periodinane mediated oxidation reactions utilizing a novel thiosulfate resin. Tetrahedron, 55,
6785-6796.
87. Memeger, W., Jr, Campbell, G.C. and Davidson, F. (1996) Poly(aminophosphazene)s and
protophosphatranes mimic classical strong anionic base catalysts in the anionic ring-opening
polymerization of lactams. Macromolecules, 29, 6475-6480.
88. Tajima, T. and Fuchigami, T. (2005) An electrolytic system that uses solid-supported bases for in
situ generation of a supporting electrolyte from acetic acid solvent. Angewandte Chemie -
International Edition, 44, 4760-4763.
89. Brunel, J.M., Legrand, O., Reymond, S. and Buono, G. (1999) First iminodiazaphospholidines
with a stereogenic phosphorus center. Application to asymmetric copper-catalysed cyclopro-
panation. Journal of the American Chemical Society, 121, 5807-5808.
90. Ma, L. and Williard, P.G. (2006) Synthesis of polymer-supported chiral lithium amide bases and
application in asymmetric deprotonation of prochiral cyclic ketones. Tetrahedron: Asymmetry,
17, 3021-3029.
Search WWH ::




Custom Search