Highly Enantioselective
Asymmetric Transfer Hydrogenation:
A Practical and Scalable Method To Efficiently Access Planar Chiral
[2.2]Paracyclophanes
Posted on 2019-03-19 - 00:00
We report herein
a general, practical method based on asymmetric
transfer hydrogenation (ATH) to control the planar chirality of a
range of substituted [2.2]paracyclophanes (pCps). Our strategy enabled
us to perform both the kinetic resolution (KR) of racemic compounds
and the desymmetrization of centrosymmetric meso derivatives on synthetically
useful scales. High selectivities (up to 99% ee) and good yields (up
to 48% for the KRs and 74% for the desymmetrization reactions) could
be observed for several poly-substituted paracyclophanes, including
a series of bromine-containing molecules. The optimized processes
could be run up to the gram scale without any loss in the reaction
efficiencies. Because of its broad applicability, the ATH approach
appears to be the method of choice to access planar chiral pCps in
their enantiopure form.
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Delcourt, Marie-Léonie; Felder, Simon; Turcaud, Serge; Pollok, Corina H.; Merten, Christian; Micouin, Laurent; et al. (2019). Highly Enantioselective
Asymmetric Transfer Hydrogenation:
A Practical and Scalable Method To Efficiently Access Planar Chiral
[2.2]Paracyclophanes. ACS Publications. Collection. https://doi.org/10.1021/acs.joc.9b00372