ACS Catalysis,
Год журнала:
2021,
Номер
11(11), С. 6643 - 6655
Опубликована: Май 21, 2021
We
report
details
of
the
reaction
mechanism
for
a
coupling
1,3-dienes
with
C-nucleophiles
that
was
catalyzed
by
Ni/Cu
cooperative
catalyst
system
using
Ni(cod)2
and
[Cu(CH3CN)4]PF6
in
presence
chiral
JOSIPHOS-type
bisphosphine
ligand
iPr2NEt,
providing
direct
access
to
highly
valuable
vicinal
quaternary
tertiary
stereocenters
high
enantio-
diastereoselectivity.
The
bimetallic
exhibited
broad
substrate
scope,
including
both
cyclic/acyclic
stabilized
nucleophiles
aryl-/alkyl-substituted
1,3-dienes.
elucidated
depth
isolating
characterizing
four
key
complexes
nickel
copper
conducting
deuterium
labeling
experiments,
kinetic
studies,
density
functional
theory
calculations.
turnover-limiting
step
this
is
proton-transfer
diene-coordinated
Ni
complex
6
from
cationic
Cu
8
yield
π-allyl
7
enolate
9,
respectively.
stereoselectivity
also
clarified
according
single-point
calculations
intermediates
9.
Chemical Reviews,
Год журнала:
2021,
Номер
122(2), С. 1654 - 1716
Опубликована: Окт. 4, 2021
Asymmetric
catalysis
is
a
major
theme
of
research
in
contemporary
synthetic
organic
chemistry.
The
discovery
general
strategies
for
highly
enantioselective
photochemical
reactions,
however,
has
been
relatively
recent
development,
and
the
variety
photoreactions
that
can
be
conducted
stereocontrolled
manner
consequently
somewhat
limited.
photocatalysis
complicated
by
short
lifetimes
high
reactivities
characteristic
photogenerated
reactive
intermediates;
design
catalyst
architectures
provide
effective
enantiodifferentiating
environments
these
intermediates
while
minimizing
participation
uncontrolled
racemic
background
processes
proven
to
key
challenge
progress
this
field.
This
review
provides
summary
chiral
structures
have
studied
solution-phase
asymmetric
photochemistry,
including
sensitizers,
inorganic
chromophores,
soluble
macromolecules.
While
some
photocatalysts
are
derived
from
privileged
both
ground-state
transformations,
others
structural
designs
unique
offer
insight
into
logic
required
photocatalysis.
Chemical Reviews,
Год журнала:
2020,
Номер
121(14), С. 8613 - 8684
Опубликована: Ноя. 2, 2020
Three-
and
four-membered
rings,
widespread
motifs
in
nature
medicinal
chemistry,
have
fascinated
chemists
ever
since
their
discovery.
However,
due
to
energetic
considerations,
small
rings
are
often
difficult
assemble.
In
this
regard,
homogeneous
gold
catalysis
has
emerged
as
a
powerful
tool
construct
these
highly
strained
carbocycles.
This
review
aims
provide
comprehensive
summary
of
all
the
major
advances
discoveries
made
gold-catalyzed
synthesis
cyclopropanes,
cyclopropenes,
cyclobutanes,
cyclobutenes,
corresponding
heterocyclic
or
heterosubstituted
analogs.
Journal of the American Chemical Society,
Год журнала:
2020,
Номер
142(18), С. 8097 - 8103
Опубликована: Апрель 19, 2020
A
stereodivergent
Pd/Cu
catalyst
system
has
been
developed
for
the
unprecedented
dynamic
kinetic
asymmetric
transformation
(DyKAT)
of
racemic
unsymmetrical
1,3-disubstituted
allylic
acetates
with
prochiral
aldimine
esters.
series
α,α-disubstituted
α-amino
acids
bearing
vicinal
stereocenters
were
easily
prepared
excellent
enantioselectivities
(up
to
>99%
ee)
and
diastereoselectivities
>20:1
dr).
Moreover,
all
four
stereoisomers
product
can
be
readily
obtained
simply
by
switching
configurations
two
chiral
metal
catalysts.
Furthermore,
present
work
highlights
power
synergistic
catalysis
consisting
common
bidentate
ligands
synthesis.
Science,
Год журнала:
2021,
Номер
371(6527), С. 380 - 386
Опубликована: Янв. 21, 2021
Keeping
Z
-olefins
intact
with
iridium
Transition
metal
catalysis
offers
a
versatile
means
of
modifying
carbon
centers
adjacent
to
carbon-carbon
double
bonds.
However,
in
the
course
these
reactions,
bond
tends
get
weakened,
allowing
its
substituents
swivel
back
and
forth.
Thus,
if
two
large
groups
start
out
on
same
side
axis
(a
geometry
known
as
-olefin),
they
end
up
opposite
sides
product.
Jiang
et
al.
report
chiral
catalyst
that
prevents
this
swiveling
just
long
enough
substitute
enantioselectively
(see
Perspective
by
Malcolmson).
Science
,
issue
p.
380
;
see
also
345
Angewandte Chemie International Edition,
Год журнала:
2022,
Номер
61(45)
Опубликована: Авг. 2, 2022
Abstract
Bimetallic
catalysis
has
emerged
as
an
efficient
strategy
for
the
development
of
new
chemical
reactions.
Importantly,
this
also
provides
a
simple
and
powerful
platform
stereodivergent
synthesis,
whereby
all
possible
stereoisomers
products
bearing
two
stereocenters
can
be
easily
prepared
from
same
set
starting
materials.
In
Minireview,
allylic
substitution,
propargylic
hydrofunctionalization,
annulation
based
on
bimetallic
been
summarized.
It
is
expected
that
more
catalytic
systems
will
developed
applied
synthesis
valuable
molecules.
Angewandte Chemie International Edition,
Год журнала:
2021,
Номер
60(47), С. 24941 - 24949
Опубликована: Сен. 17, 2021
The
development
of
efficient
and
straightforward
methods
for
obtaining
all
optically
active
isomers
structurally
rigid
spirocycles
from
readily
available
starting
materials
is
great
value
in
drug
discovery
chiral
ligand
development.
However,
the
stereodivergent
synthesis
bearing
multiple
stereocenters
remains
an
unsolved
challenge
owing
to
steric
hindrance
ring
strain.
Herein,
we
report
enantio-
diastereodivergent
through
dual-metal-catalyzed
[3+2]
annulation
oxy
π-allyl
metallic
dipoles
with
less
commonly
employed
nucleophilic
(imino
esters).
A
series
spiro
compounds
a
pyrroline
olefin
were
easily
synthesized
manner
(up
19:1
dr,
>99
%
ee),
which
showed
promise
as
new
type
N-olefin
ligand.
Preliminary
mechanistic
studies
also
carried
out
understand
process
this
bimetallic
catalysis.
Journal of the American Chemical Society,
Год журнала:
2022,
Номер
144(4), С. 1971 - 1985
Опубликована: Янв. 20, 2022
Comprehensive
computational
studies
were
carried
out
to
explore
the
mechanisms
of
enantioselective
Cu/Pd
and
stereodivergent
Cu/Ir
dual-catalytic
syntheses
α,α-disubstituted
α-amino
acids
(α-AAs).
A
chiral
copper
azomethine
ylide
undergoes
facile
α-allylation
with
racemic
π-allylpalladium
species
or
stereopure
π-allyliridium
complex
stereoconvergently
stereodivergently
furnish
single/double
stereocenters,
respectively.
Stereoselectivity
at
α-center
is
controlled
by
facial
selectivity
respect
prochiral
nucleophile.
Despite
apparently
similar
transition-state
assemblies,
models
distortion/interaction
analyses
disclose
versatile
modes
stereoinduction
wherein
can
face-selectively
intercept
metal−π-allyl
intermediates
utilizing
attractive
dispersion
interactions
and/or
sterically
caused
distortions.
Generation
β-stereocenter
in
system
relies
on
a
stereospecifically
generated
allyliridium
electronically
branched-to-linear
selectivity,
while
dual
yields
linear
monochiral
product
due
steric
factors
π–π
stacking
interactions.
The
demonstrate
molecular
level
how
ligand-encoded
information
transferred
α-/β-sites
resulting
α-AAs
mode
regio-/stereoselection
altered
differences
transition-metal-stabilized
coupling
partners.
To
facilitate
stereoselective
catalysis,
suite
analytical
tools
extract
controlling
for
asymmetric
induction
demonstrated.
Journal of the American Chemical Society,
Год журнала:
2022,
Номер
144(38), С. 17319 - 17329
Опубликована: Сен. 1, 2022
The
enantioconvergent
cross-coupling
of
racemic
alkyl
halides
represents
a
powerful
tool
for
the
synthesis
enantioenriched
molecules.
In
this
regard,
first-row
transition
metal
catalysis
provides
suitable
mechanism
stereoconvergence
by
converting
to
prochiral
radical
intermediates
owing
their
good
single-electron
transfer
ability.
contrast
noble
development
chiral
nickel
catalyst,
copper-catalyzed
is
less
studied.
Besides
enantiocontrol
issue,
major
challenge
arises
from
weak
reducing
capability
copper
that
slows
reaction
initiation.
Recently,
significant
efforts
have
been
dedicated
basic
research
aimed
at
developing
ligands
halides.
This
perspective
will
discuss
advances
in
burgeoning
area
with
particular
emphasis
on
strategic
anionic
ligand
design
tune
initiation
under
thermal
conditions
our
group.
Journal of the American Chemical Society,
Год журнала:
2023,
Номер
145(30), С. 16508 - 16516
Опубликована: Июль 20, 2023
Enantioenriched
organoboron
intermediates
are
important
building
blocks
in
organic
synthesis
and
drug
discovery.
Recently,
transition
metal-catalyzed
enantioselective
1,2-metalate
rearrangements
of
alkenylboronates
have
emerged
as
an
attractive
protocol
to
access
these
valuable
reagents
by
installing
two
different
carbon
fragments
across
C═C
π-bonds.
Herein,
we
report
the
development
iridium-catalyzed
asymmetric
allylation-induced
rearrangement
bicyclo[1.1.0]butyl
(BCB)
boronate
complexes
enabled
strain
release,
which
allows
difunctionalization
C-C
σ-bonds,
including
dicarbonation
carboboration.
This
provides
a
variety
enantioenriched
three-dimensional
1,1,3-trisubstituted
cyclobutane
products
bearing
boronic
ester
that
can
be
readily
derivatized.
Notably,
reaction
gives
trans
diastereoisomers
result
from
anti-addition
σ-bond,
is
contrast
syn-additions
observed
for
reactions
promoted
PdII-aryl
other
electrophiles
our
previous
works.
The
diastereoselectivity
has
been
rationalized
based
on
combination
experimental
data
density
functional
theory
calculations,
suggest
BCB
highly
nucleophilic
react
via
early
states
with
low
activation
barriers.