Organic & Biomolecular Chemistry,
Год журнала:
2023,
Номер
21(34), С. 6886 - 6891
Опубликована: Янв. 1, 2023
A
practical
method
to
synthesize
sulfinate
esters
from
aryl
iodides
is
disclosed.
Direct
oxidation
of
thioesters
prepared
by
copper-catalyzed
C–S
formation
realized
the
efficient
synthesis
esters.
Chemical Reviews,
Год журнала:
2021,
Номер
122(2), С. 2487 - 2649
Опубликована: Ноя. 9, 2021
Redox
processes
are
at
the
heart
of
synthetic
methods
that
rely
on
either
electrochemistry
or
photoredox
catalysis,
but
how
do
and
catalysis
compare?
Both
approaches
provide
access
to
high
energy
intermediates
(e.g.,
radicals)
enable
bond
formations
not
constrained
by
rules
ionic
2
electron
(e)
mechanisms.
Instead,
they
1e
mechanisms
capable
bypassing
electronic
steric
limitations
protecting
group
requirements,
thus
enabling
chemists
disconnect
molecules
in
new
different
ways.
However,
while
providing
similar
intermediates,
differ
several
physical
chemistry
principles.
Understanding
those
differences
can
be
key
designing
transformations
forging
disconnections.
This
review
aims
highlight
these
similarities
between
comparing
their
underlying
principles
describing
impact
electrochemical
photochemical
methods.
Chemical Reviews,
Год журнала:
2021,
Номер
122(2), С. 2017 - 2291
Опубликована: Ноя. 23, 2021
We
present
here
a
review
of
the
photochemical
and
electrochemical
applications
multi-site
proton-coupled
electron
transfer
(MS-PCET)
in
organic
synthesis.
MS-PCETs
are
redox
mechanisms
which
both
an
proton
exchanged
together,
often
concerted
elementary
step.
As
such,
MS-PCET
can
function
as
non-classical
mechanism
for
homolytic
bond
activation,
providing
opportunities
to
generate
synthetically
useful
free
radical
intermediates
directly
from
wide
variety
common
functional
groups.
introduction
practitioner’s
guide
reaction
design,
with
emphasis
on
unique
energetic
selectivity
features
that
characteristic
this
class.
then
chapters
oxidative
N–H,
O–H,
S–H,
C–H
homolysis
methods,
generation
corresponding
neutral
species.
Then,
reductive
PCET
activations
involving
carbonyl,
imine,
other
X═Y
π-systems,
heteroarenes,
where
ketyl,
α-amino,
heteroarene-derived
radicals
be
generated.
Finally,
we
asymmetric
catalysis
materials
device
applications.
Within
each
chapter,
subdivide
by
group
undergoing
homolysis,
thereafter
type
transformation
being
promoted.
Methods
published
prior
end
December
2020
presented.
The Chemical Record,
Год журнала:
2021,
Номер
21(9), С. 2526 - 2537
Опубликована: Май 7, 2021
Abstract
Organosulfur
compounds
are
being
widely
used
in
medicinal
chemistry,
as
well
organic
transformations
and
synthetic
applications.
Because
of
their
interest
many
areas,
the
development
sustainable
green
methods
to
access
various
organosulfur
has
a
high
influence
on
chemistry
community.
Electroorganic
synthesis
become
very
valuable
methodology
for
during
last
decade.
The
use
electrochemical
technology
offers
green,
safe
alternative
prepare
modify
such
compounds.
This
review
summarises
recent
developments
preparation
sulfoxides,
sulfones,
sulfinic
esters,
sulfonamides,
thiosulfonates,
sulfonyl
fluorides
sulfoximines
under
reaction
conditions.
Advanced Synthesis & Catalysis,
Год журнала:
2022,
Номер
364(7), С. 1319 - 1325
Опубликована: Фев. 23, 2022
Abstract
An
atom
and
step
economy
cascade
trifluoromethylation/cyclization
of
unactivated
alkene
with
Langlois
reagent
as
a
CF
3
source
is
described.
A
variety
polycyclic
quinazolinones
were
successfully
synthesized
in
52–81%
yields
under
transition
metal‐
oxidant‐free
conditions.
The
used
this
strategy
possesses
the
advantages
bench‐stablity,
cost‐effectivity
high‐efficiency.
Additionally,
gram‐scale
reaction,
broad
substrate
scope
good
functional
group
tolerance
demonstrated
synthetic
usefulness
protocol.
magnified
image
The Journal of Organic Chemistry,
Год журнала:
2022,
Номер
87(7), С. 4764 - 4776
Опубликована: Март 23, 2022
A
practical
and
scalable
protocol
for
electrochemical
arylation
of
quinoxalin(on)es
with
arylhydrazine
hydrochlorides
under
mild
conditions
has
been
developed.
This
method
exhibits
high
efficiency,
easy
scalability,
broad
functional
group
tolerance.
Various
arylhydrazines
underwent
this
transformation
smoothly
in
an
undivided
cell,
providing
the
corresponding
aryl-substituted
moderate
to
good
yields.
radical
mechanism
is
involved
reaction.
Green Chemistry,
Год журнала:
2022,
Номер
24(3), С. 1342 - 1349
Опубликована: Янв. 1, 2022
Electrocatalysis
for
the
controllable
coupling
of
thiols
with
DCE
was
achieved
to
generate
value-added
β-chloro-tethered
sulfur
compounds
in
batch
and
flow.
Green Chemistry,
Год журнала:
2022,
Номер
24(16), С. 6113 - 6118
Опубликована: Янв. 1, 2022
An
electrochemical
sulfur
dioxide
insertion
reaction
of
alkenes
and
alcohols
with
potassium
metabisulfite
as
the
surrogate
has
been
developed,
which
provides
a
green
efficient
method
for
preparation
sulfonate
esters.
Green Synthesis and Catalysis,
Год журнала:
2022,
Номер
4(1), С. 41 - 45
Опубликована: Март 4, 2022
The
simultaneous
binding/dissociation
of
multiple
bonds
in
a
one-pot
manner
by
multicomponent
reactions
provide
an
important
approach
for
developing
novel
and
sustainable
pathway
the
drug
discovery
process.
Herein
we
develop
electrocatalytic
three-component
reaction
to
construct
multifunctional
valuable
isothiourea
compounds,
which
uses
thiols,
isocyanides
amines
as
substrates.
Compared
with
previous
work,
organic
electrosynthesis
technique
can
avoid
requirement
heavy
metal
catalysts
stoichiometric
oxidants.
In
addition,
using
thiol
substrate
participate
broadens
source
sulfur,
also
more
abundant
derivatives.
The Journal of Organic Chemistry,
Год журнала:
2020,
Номер
85(21), С. 13735 - 13746
Опубликована: Окт. 13, 2020
A
dehydrogenative
[3
+
2]
annulation
reaction
of
aniline
derivatives
and
alkenes
has
been
developed
via
the
ruthenium-electron
catalytic
systems
for
synthesis
versatile
indolines.
Electricity
is
used
as
a
sustainable
oxidant
to
regenerate
active
Ru(II)
catalyst
promote
H2
evolution.
This
protocol
ecofriendly
easy
handle
it
uses
simple
undivided
cell
in
mild
conditions
without
employment
metal
oxidants.