Organometallics,
Journal Year:
2022,
Volume and Issue:
41(6), P. 667 - 679
Published: March 4, 2022
The
formation
of
a
new
C–C
bond
at
sp3-hybridized
centers
is
highly
desirable,
as
it
opens
up
unique,
unexplored
chemical
space.
revolutionary
discoveries
in
this
field
meet
the
longstanding
challenge
forming
stereocontrolled
bonds
and
provide
rapid
access
to
C(sp3)-rich
drug
molecules.
improved
catalytic
systems
have
enabled
creative
design
challenging
transformations.
latest
advancements
nickel
catalysis
are
particularly
attractive
shown
excellent
performance
field.
progress
that
has
been
made
toward
C(sp3)–C(sp3)
(traditional
cross-electrophile
couplings)
past
decade
highlighted
review.
Chemical Reviews,
Journal Year:
2021,
Volume and Issue:
122(2), P. 1485 - 1542
Published: Nov. 18, 2021
The
merger
of
photoredox
catalysis
with
transition
metal
catalysis,
termed
metallaphotoredox
has
become
a
mainstay
in
synthetic
methodology
over
the
past
decade.
Metallaphotoredox
combined
unparalleled
capacity
for
bond
formation
broad
utility
photoinduced
electron-
and
energy-transfer
processes.
Photocatalytic
substrate
activation
allowed
engagement
simple
starting
materials
metal-mediated
bond-forming
Moreover,
electron
or
energy
transfer
directly
key
organometallic
intermediates
provided
novel
modes
entirely
complementary
to
traditional
catalytic
platforms.
This
Review
details
contextualizes
advancements
molecule
construction
brought
forth
by
metallaphotocatalysis.
ACS Catalysis,
Journal Year:
2019,
Volume and Issue:
9(10), P. 8943 - 8960
Published: Aug. 28, 2019
Pyridinium
salts
are
valuable
building
blocks,
which
have
been
widely
applied
in
various
organic
transformations
during
the
past
few
decades.
In
particular,
N-functionalized
pyridinium
explored
as
convenient
radical
precursors,
would
go
through
reductive
single-electron
transfer.
As
a
result,
chemistry
of
such
compounds
for
generating
carbon-,
nitrogen-,
and
oxygen-centered
radicals
has
witnessed,
remarkable
progress
achieved,
making
it
hot
topic
over
last
five
years.
This
Review
describes
recent
advances
area
concerning
development
reactions
involving
synthesis.
Angewandte Chemie International Edition,
Journal Year:
2019,
Volume and Issue:
59(24), P. 9264 - 9280
Published: Oct. 10, 2019
Abstract
In
this
Review,
we
highlight
recent
advances
in
the
understanding
and
design
of
N‐functionalized
pyridinium
scaffolds
as
redox‐active,
single‐electron,
functional
group
transfer
reagents.
We
provide
a
selection
representative
methods
that
demonstrate
reactivity
fundamental
emerging
field.
The
these
reagents
can
be
divided
into
two
divergent
pathways:
homolytic
fragmentation
to
liberate
N‐bound
substituent
corresponding
radical
or
an
alternative
heterolytic
liberates
N‐centered
radical.
A
short
description
elementary
steps
involved
induced
by
single‐electron
is
also
critically
discussed
guide
readers
towards
processes
thought
occur
under
conditions.
Journal of the American Chemical Society,
Journal Year:
2019,
Volume and Issue:
141(41), P. 16197 - 16201
Published: Sept. 29, 2019
A
catalytic
deaminative
alkylation
of
unactivated
olefins
is
described.
The
protocol
characterized
by
its
mild
conditions,
wide
scope,
including
the
use
ethylene
as
substrate,
and
exquisite
site-selectivity
pattern
for
both
α-olefins
internal
olefins,
thus
unlocking
a
new
platform
to
forge
sp3-sp3
linkages,
even
in
context
late-stage
functionalization.
Journal of the American Chemical Society,
Journal Year:
2021,
Volume and Issue:
143(9), P. 3536 - 3543
Published: Feb. 23, 2021
As
alcohols
are
ubiquitous
throughout
chemical
science,
this
functional
group
represents
a
highly
attractive
starting
material
for
forging
new
C–C
bonds.
Here,
we
demonstrate
that
the
combination
of
anodic
preparation
alkoxy
triphenylphosphonium
ion
and
nickel-catalyzed
cathodic
reductive
cross-coupling
provides
an
efficient
method
to
construct
C(sp2)–C(sp3)
bonds,
in
which
free
aryl
bromides—both
readily
available
chemicals—can
be
directly
used
as
coupling
partners.
This
paired
electrolysis
reaction
features
broad
substrate
scope
bearing
wide
gamut
functionalities,
was
illustrated
by
late-stage
arylation
several
structurally
complex
natural
products
pharmaceuticals.
Organic Letters,
Journal Year:
2019,
Volume and Issue:
21(9), P. 3346 - 3351
Published: April 17, 2019
Described
is
a
cross-electrophilic,
deaminative
coupling
strategy
harnessing
Katritzky
salts
as
new
species
of
electrophile
in
Ni/photoredox
dual
catalytic
reductive
cross-coupling
reactions.
Distinguishing
features
this
arylation
protocol
include
its
mild
reaction
conditions,
high
chemoselectivity,
and
adaptability
to
variety
complex
substrates
[i.e.,
pyridinium
derived
from
amines
partners
(hetero)aryl
bromides].
Chemical Society Reviews,
Journal Year:
2021,
Volume and Issue:
50(16), P. 8903 - 8953
Published: Jan. 1, 2021
The
formation
of
C–aryl
bonds
has
been
the
focus
intensive
research
over
last
decades
for
construction
complex
molecules
from
simple,
readily
available
feedstocks.
Journal of the American Chemical Society,
Journal Year:
2022,
Volume and Issue:
144(3), P. 1130 - 1137
Published: Jan. 14, 2022
Herein,
we
report
the
first
Ni-catalyzed
enantioselective
deaminative
alkylation
of
amino
acid
and
peptide
derivatives
with
unactivated
olefins.
Key
for
success
was
discovery
a
new
sterically
encumbered
bis(oxazoline)
ligand
backbone,
thus
offering
de
novo
technology
accessing
enantioenriched
sp3–sp3
linkages
via
sp3
C–N
functionalization.
Our
protocol
is
distinguished
by
its
broad
scope
generality
across
wide
number
counterparts,
even
in
context
late-stage
In
addition,
an
remote
hydroalkylation
reaction
internal
olefins
within
reach,
providing
useful
entry
point
forging
centers
at
C–H
sites.