Specific Reaction Mehanisms Flashcards
Hydroboration
Overall addition of H2O across C=C forming antimarkovnikov product, needs H2O2, NaOH for last step
Bis-hydroxylation
Forms cis-1,2-diols using alkene and OsO4, needs NaHSO3/H2O to hydrolyse (OsO4)2- at last step
Brominaton
Trans addition
Co-halogenation
Forms halohydrin, trans and markovnikov product
Oxymercuration
Addition of water across C=C using Hg(OAc)2, markovnikov product with OH on most substituted C, needs NaBH4 to remove HgOAc at last step
Epoxidation
Uses m-CPBA with alkene
Epoxidation under basic conditions
Nu- attacks less sterically hindered C by Sn2 forming anti-markovnikov product
Epoxidation under acidic conditions
Forms anti-1,2-diols, Nu- attacks most stable C forming markovnikov product
Leaving group for E2
Must be antiperiplanar/1,2-transdiaxial
Leaving group for Sn2
Must be axial
Bredt’s rule
Rigid bicyclic ring systems can’t accommodate a double bond at bridgehead positon so no elimination occurs here
What does NaIO4 do
Cleaves cyclic 1,2-diols forming a linear aldehyde/ketone with 2 carbonyl groups