Synthesis of 1,3-Amino
Alcohols, 1,3-Diols, Amines,
and Carboxylic Acids from Terminal Alkynes
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Abstract
The
half-sandwich ruthenium complexes <b>1</b>β<b>3</b> activate terminal alkynes toward anti-Markovnikov hydration
and reductive hydration under mild conditions. These reactions are
believed to proceed via addition of water to metal vinylidene intermediates
(<b>4</b>). The functionalization of propargylic alcohols by
metal vinylidene pathways is challenging owing to decomposition of
the starting material and catalytic intermediates. Here we show that
catalyst <b>2</b> can be employed to convert propargylic alcohols
to 1,3-diols in high yield and with retention of stereochemistry at
the propargylic position. The method is also amenable to propargylic
amine derivatives, thereby establishing a route to enantioenriched
1,3-amino alcohol products. We also report the development of formal
anti-Markovnikov reductive amination and oxidative hydration reactions
to access linear amines and carboxylic acids, respectively, from terminal
alkynes. This chemistry expands the scope of products that can be
prepared from terminal alkynes by practical and high-yielding metal-catalyzed
methods