Stereospecific Electrophilic Fluorination of Alkylcarbastannatrane Reagents
Xinghua Ma, Mohamed Diane, Glenn Ralph, Christine Chen, Mark R. Biscoe
Abstract
Xinghua Ma, Mohamed Diane, Glenn Ralph, Christine Chen, Mark R. Biscoe
Abstract
Abstract We report the use of isolable primary and secondary alkylcarbastannatrane nucleophiles in site‐specific fluorination reactions. These reactions occur without the need for transition metal catalysis or in situ activation of the nucleophile. In the absence of the carbastannatrane backbone, alkyltin nucleophiles exhibit no activity towards fluorination. When enantioenriched alkylcarbastannatranes are employed, fluorination occurs predominately via a stereoinvertive mechanism to generate highly enantioenriched alkyl fluoride compounds. These conditions can also be extended to stereospecific chlorination, bromination, and iodination reactions.
OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Abstract We report the use of isolable primary and secondary alkylcarbastannatrane nucleophiles in site‐specific fluorination reactions. These reactions occur without the need for transition metal catalysis or in situ activation of the nucleophile. In the absence of the carbastannatrane backbone, alkyltin nucleophiles exhibit no activity towards fluorination. When enantioenriched alkylcarbastannatranes are employed, fluorination occurs predominately via a stereoinvertive mechanism to generate highly enantioenriched alkyl fluoride compounds. These conditions can also be extended to stereospecific chlorination, bromination, and iodination reactions.
Key concepts: Nucleophile, Stereospecificity, Halogenation, Chemistry, Electrophile, Electrophilic fluorination, Reagent, Fluoride