Difunctionalization of alkenes involving metal migration
The direct difunctionalization of alkenes, a cheap and abundant feedstock, represents one of
the most attractive strategies for increasing molecular complexity in synthetic organic
chemistry. In contrast with the 1, 2‐difunctionalization of alkenes, recent advances showcase
alkene 1, n‐difunctionalizations (n≠ 2) involving metal migration is an emerging and rapidly
growing area of research. This promising strategy not only opens a novel avenue for future
development of alkene transformations, but also significantly expands upon the bond …
the most attractive strategies for increasing molecular complexity in synthetic organic
chemistry. In contrast with the 1, 2‐difunctionalization of alkenes, recent advances showcase
alkene 1, n‐difunctionalizations (n≠ 2) involving metal migration is an emerging and rapidly
growing area of research. This promising strategy not only opens a novel avenue for future
development of alkene transformations, but also significantly expands upon the bond …
Abstract
The direct difunctionalization of alkenes, a cheap and abundant feedstock, represents one of the most attractive strategies for increasing molecular complexity in synthetic organic chemistry. In contrast with the 1,2‐difunctionalization of alkenes, recent advances showcase alkene 1,n‐difunctionalizations (n≠2) involving metal migration is an emerging and rapidly growing area of research. This promising strategy not only opens a novel avenue for future development of alkene transformations, but also significantly expands upon the bond disconnections available in modern organic synthesis. This Minireview summarizes recent progress in the migratory difunctionalization of alkenes, with an emphasis on the driving force for metal migration.
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