We considered using trifluoromethyl oxirane (CF3-epoxide) as a starting material in lithiation-borylation reactions since it is stable at ultra-low temperature (-100 oC). In order to minimize the decomposition of lithiated trifluoromethyl oxirane, we decided to trap it with the boronic ester as it was being generated at low temperature. We began our studies by establishing conditions for lithiation-borylation of trifluoromethyl oxirane and boronic esters. After screening various conditions including temperature, time, solvent, catalyst, and activator, we have successfully developed optimized reaction conditions for the stereoselective synthesis of organofluorine compounds from the reaction of lithiated trifluoromethyl oxirane and boronic ester at low temperature (-78 oC). Lithiation-Borylation has been applied for the first time to the obtention of fluorinated boronic esters, by avoiding undesired decomposition by taking advantage of the stability of α-trifluoromethyl epoxides. We have applied this method to a wide variety of boronic ester starting materials containing various biologically relevant functional groups. To demonstrate the potential of the prepared fluorinated boronic ester further, we have transformed this into novel fluorinated quaternary carbon centre bearing biologically important functionals.