Chemical Society Reviews,
Год журнала:
2022,
Номер
51(10), С. 3898 - 3925
Опубликована: Янв. 1, 2022
This
manuscript
reviews
for
the
first
time
developments
at
interface
between
organic
electrosynthesis
and
single-atom
catalysis,
highlighting
advantages
in
shifting
from
a
batch
to
flow
production.
Chemical Reviews,
Год журнала:
2018,
Номер
119(4), С. 2192 - 2452
Опубликована: Ноя. 27, 2018
C–H
activation
has
surfaced
as
an
increasingly
powerful
tool
for
molecular
sciences,
with
notable
applications
to
material
crop
protection,
drug
discovery,
and
pharmaceutical
industries,
among
others.
Despite
major
advances,
the
vast
majority
of
these
functionalizations
required
precious
4d
or
5d
transition
metal
catalysts.
Given
cost-effective
sustainable
nature
earth-abundant
first
row
metals,
development
less
toxic,
inexpensive
3d
catalysts
gained
considerable
recent
momentum
a
significantly
more
environmentally-benign
economically-attractive
alternative.
Herein,
we
provide
comprehensive
overview
on
until
summer
2018.
Chemical Society Reviews,
Год журнала:
2018,
Номер
47(15), С. 5786 - 5865
Опубликована: Янв. 1, 2018
This
review
provides
an
overview
of
the
use
electrochemistry
as
appealing
platform
for
expediting
carbon–hydrogen
functionalization
and
carbon–nitrogen
bond
formation.
Chemical Society Reviews,
Год журнала:
2021,
Номер
50(14), С. 7941 - 8002
Опубликована: Янв. 1, 2021
Electrochemistry
has
recently
gained
increased
attention
as
a
versatile
strategy
for
achieving
challenging
transformations
at
the
forefront
of
synthetic
organic
chemistry.
Electrochemistry's
unique
ability
to
generate
highly
reactive
radical
and
ion
intermediates
in
controlled
fashion
under
mild
conditions
inspired
development
number
new
electrochemical
methodologies
preparation
valuable
chemical
motifs.
Particularly,
recent
developments
electrosynthesis
have
featured
an
use
redox-active
electrocatalysts
further
enhance
control
over
selective
formation
downstream
reactivity
these
intermediates.
Furthermore,
electrocatalytic
mediators
enable
proceed
manner
that
is
mechanistically
distinct
from
purely
methods,
allowing
subversion
kinetic
thermodynamic
obstacles
encountered
conventional
synthesis.
This
review
highlights
key
innovations
within
past
decade
area
electrocatalysis,
with
emphasis
on
mechanisms
catalyst
design
principles
underpinning
advancements.
A
host
oxidative
reductive
are
discussed
grouped
according
classification
transformation
nature
electrocatalyst.
Chemical Reviews,
Год журнала:
2020,
Номер
120(3), С. 1788 - 1887
Опубликована: Янв. 6, 2020
During
the
past
decades,
synthetic
organic
chemistry
discovered
that
directing
group
assisted
C–H
activation
is
a
key
tool
for
expedient
and
siteselective
construction
of
C–C
bonds.
Among
various
strategies,
bidentate
groups
are
now
recognized
as
one
most
efficient
devices
selective
functionalization
certain
positions
due
to
fact
its
metal
center
permits
fine,
tunable,
reversible
coordination.
The
family
permit
types
assistance
be
achieved,
such
N,N-dentate,
N,O-dentate,
N,S-dentate
auxiliaries,
which
categorized
based
on
coordination
site.
In
this
review,
we
broadly
discuss
bond
reactions
formation
bonds
with
aid
groups.
Accounts of Chemical Research,
Год журнала:
2020,
Номер
53(2), С. 300 - 310
Опубликована: Янв. 15, 2020
Electrochemical
synthesis
of
organic
compounds
has
emerged
as
an
attractive
and
environmentally
benign
alternative
to
conventional
approaches
for
oxidation
reduction
that
utilizes
electric
current
instead
chemical
oxidants
reductants.
As
such,
many
useful
transformations
have
been
developed,
including
the
Kolbe
reaction,
Simons
fluorination
process,
Monsanto
adiponitrile
Shono
oxidation,
name
a
few.
C-H
functionalization
represents
one
most
promising
reaction
types
among
electrochemical
transformations,
since
this
process
avoids
prefunctionalization
substrates
provides
novel
retrosynthetic
disconnections.
However,
site-selective
anodic
bonds
is
still
fundamental
challenge
due
high
potentials
compared
solvents
common
functional
groups.
To
overcome
issue,
indirect
electrolysis
via
action
mediator
(a
redox
catalyst)
regularly
employed,
by
which
selectivity
can
be
controlled
following
said
with
substrate.
Since
transition
metal
complexes
easily
tuned
modification
ligand,
synergistic
use
electrochemistry
catalysis
achieve
strategy.
In
Account,
we
summarize
contextualize
our
recent
efforts
toward
metal-catalyzed
proximal
suitable
directing
group.
We
developed
oxygenation,
acylation,
alkylation,
halogenation
reactions
in
Pd(II)
species
oxidized
Pd(III)
or
Pd(IV)
intermediate
followed
reductive
elimination
form
corresponding
C-O,
C-C,
C-X
bonds.
Importantly,
improved
monofunctionalization
achieved
Pd-catalyzed
C(sp3)-H
oxygenation
using
PhI(OAc)2
oxidant.
Physical
separators
are
sometimes
used
prevent
deposition
Pd
black
on
cathode
resulting
from
valent
species.
skirted
issue
through
development
Cu-catalyzed
C(sp2)-H
amination
n-Bu4NI
cocatalyst
undivided
cell.
addition,
Ir-catalyzed
vinylic
acrylic
acids
alkynes
cell,
affording
various
substituted
α-pyrones
good
excellent
yield.
More
importantly,
oxidants,
Ag2CO3,
Cu(OAc)2,
PhI(OAc)2,
resulted
much
lower
yields
absence
electrical
under
otherwise
identical
conditions.
elaborated
below,
progress
area
effective
platform
friendly
sustainable
selective
transformations.
ACS Catalysis,
Год журнала:
2018,
Номер
8(8), С. 7086 - 7103
Опубликована: Июнь 18, 2018
C–H
activation
has
emerged
as
a
transformative
tool
in
molecular
synthesis,
but
until
recently
oxidative
activations
have
largely
involved
the
use
of
stoichiometric
amounts
expensive
and
toxic
metal
oxidants,
compromising
overall
sustainable
nature
chemistry.
In
sharp
contrast,
electrochemical
been
identified
more
efficient
strategy
that
exploits
storable
electricity
place
byproduct-generating
chemical
reagents.
Thus,
transition-metal
catalysts
were
shown
to
enable
versatile
reactions
manner.
While
palladium
catalysis
set
stage
for
C(sp2)–H
C(sp3)–H
functionalizations
by
N-containing
directing
groups,
rhodium
ruthenium
allowed
weakly
coordinating
amides
acids.
contrast
these
precious
4d
transition
metals,
recent
year
witnessed
emergence
cobalt
oxygenations,
nitrogenations,
C–C-forming
[4+2]
alkyne
annulations.
Thereby,
silver(I)
oxidants
was
prevented,
improving
environmentally
benign
catalysis.
Herein,
we
summarize
major
advances
organometallic
otherwise
inert
bonds
electrocatalysis
through
May
2018.
ACS Central Science,
Год журнала:
2021,
Номер
7(2), С. 245 - 261
Опубликована: Фев. 2, 2021
Since
the
definition
of
"12
Principles
Green
Chemistry"
more
than
20
years
ago,
chemists
have
become
increasingly
mindful
need
to
conserve
natural
resources
and
protect
environment
through
judicious
choice
synthetic
routes
materials.
The
direct
activation
functionalization
C–H
bonds,
bypassing
intermediate
functional
group
installation
is,
in
abstracto,
step
atom
economic,
but
numerous
factors
still
hinder
sustainability
large-scale
applications.
In
this
Outlook,
we
highlight
research
areas
seeking
overcome
challenges
activation:
pursuit
abundant
metal
catalysts,
avoidance
static
directing
groups,
replacement
oxidants,
introduction
bioderived
solvents.
We
close
by
examining
progress
made
subfield
aryl
borylation
from
its
origins,
highly
efficient
precious
Ir-based
systems,
emerging
3d
catalysts.
future
growth
field
will
depend
on
industrial
uptake,
thus
urge
researchers
strive
toward
sustainable
activation.
ACS Catalysis,
Год журнала:
2018,
Номер
8(8), С. 7179 - 7189
Опубликована: Июнь 19, 2018
Electrochemical
transition
metal
catalysis
is
a
powerful
strategy
for
organic
synthesis
because
it
obviates
the
use
of
stoichiometric
chemical
oxidants
and
reductants.
C–H
bond
functionalization
offers
variety
useful
conversions
simple
ubiquitous
molecules
into
diverse
functional
groups
in
single
synthetic
operation.
This
review
summarizes
recent
progress
merging
electrochemistry
with
metal-catalyzed
functionalization,
specifically
C–C,
C–X
(halogen),
C–O,
C–P,
C–N
formation.
Accounts of Chemical Research,
Год журнала:
2019,
Номер
53(1), С. 84 - 104
Опубликована: Дек. 19, 2019
To
improve
the
efficacy
of
molecular
syntheses,
researchers
wish
to
capitalize
upon
selective
modification
otherwise
inert
C-H
bonds.
The
past
two
decades
have
witnessed
considerable
advances
in
coordination
chemistry
that
set
stage
for
transformative
tools
functionalizations.
Particularly,
oxidative
C-H/C-H
and
C-H/Het-H
transformations
gained
major
attention
because
they
avoid
all
elements
substrate
prefunctionalization.
Despite
advances,
activations
been
dominated
by
precious
transition
metal
catalysts
based
on
palladium,
ruthenium,
iridium,
rhodium,
thus
compromising
sustainable
nature
overall
activation
approach.
same
holds
true
predominant
use
stoichiometric
chemical
oxidants
regeneration
active
catalyst,
prominently
featuring
hypervalent
iodine(III),
copper(II),
silver(I)
oxidants.
Thereby,
quantities
undesired
byproducts
are
generated,
which
preventive
applications
scale.
In
contrast,
elegant
merger
homogeneous
metal-catalyzed
with
electrosynthesis
bears
unique
power
achieve
outstanding
levels
oxidant
resource
economy.
Thus,
contrast
classical
electrosyntheses
control,
metalla-electrocatalysis
huge
largely
untapped
potential
unmet
site
selectivities
means
catalyst
control.
While
indirect
electrolysis
using
palladium
complexes
has
realized,
less
toxic
expensive
base
feature
distinct
beneficial
assets
toward
this
Account,
I
summarize
emergence
electrocatalyzed
earth-abundant
3d
metals
beyond,
a
topical
focus
contributions
from
our
laboratories
through
November
2019.
cobalt
electrocatalysis
was
identified
as
particularly
powerful
platform
wealth
transformations,
including
oxygenations
nitrogenations
well
alkynes,
alkenes,
allenes,
isocyanides,
carbon
monoxide,
among
others.
As
complementary
tools,
nickel,
copper,
very
recently
iron
devised
metalla-electrocatalyzed
activations.
Key
success
were
detailed
mechanistic
insights,
oxidation-induced
reductive
elimination
scenarios.
Likewise,
development
methods
make
weak
O-coordination
benefited
crucial
insights
into
catalyst's
modes
action
experiment,
operando
spectroscopy,
computation.
Overall,
thereby
syntheses
These
electrooxidative
frequently
characterized
improved
chemoselectivities.
Hence,
ability
dial
redox
at
minimum
level
required
desired
transformation
renders
an
ideal
functionalization
structurally
complex
molecules
sensitive
functional
groups.
This
strategy
was,
inter
alia,
successfully
applied
scale-up
continuous
flow
step-economical
assembly
polycyclic
aromatic
hydrocarbons.