Energy & environment materials,
Год журнала:
2022,
Номер
6(5)
Опубликована: Май 28, 2022
Electrochemical
water
splitting
represents
one
of
the
most
promising
technologies
to
produce
green
hydrogen,
which
can
help
realize
goal
achieving
carbon
neutrality.
While
substantial
efforts
on
a
laboratory
scale
have
been
made
for
understanding
fundamental
catalysis
and
developing
high‐performance
electrocatalysts
two
half‐reactions
involved
in
electrocatalysis,
much
less
attention
has
paid
doing
relevant
research
larger
scale.
For
example,
few
such
researches
done
an
industrial
Herein,
we
review
very
recent
endeavors
bridge
gaps
between
applications
electrolysis.
We
begin
by
introducing
fundamentals
electrochemical
then
present
comparisons
testing
protocol,
figure
merit,
catalyst
interest,
manufacturing
cost
industry‐based
water‐electrolysis
research.
Special
is
tracking
surface
reconstruction
process
identifying
real
catalytic
species
under
different
conditions,
highlight
significant
distinctions
corresponding
mechanisms.
Advances
designs
industry‐relevant
electrolysis
are
also
summarized,
reveal
progress
moving
practical
forward
accelerating
synergies
material
science
engineering.
Perspectives
challenges
electrocatalyst
design
strategies
proposed
finally
further
lab‐scale
large‐scale
electrocatalysis
applications.
Advanced Materials,
Год журнала:
2022,
Номер
34(39)
Опубликована: Май 17, 2022
Abstract
Atomically
dispersed
metal
catalysts
have
triggered
great
interest
in
the
field
of
catalysis
owing
to
their
unique
features.
Isolated
single
or
few
atoms
can
be
anchored
on
substrates
via
chemical
bonding
space
confinement
maximize
atom
utilization
efficiency.
The
key
challenge
lies
precisely
regulating
geometric
and
electronic
structure
active
centers,
thus
significantly
influencing
catalytic
properties.
Although
several
reviews
been
published
preparation,
characterization,
application
single‐atom
(SACs),
comprehensive
understanding
SACs,
dual‐atom
(DACs),
atomic
clusters
has
never
systematically
summarized.
Here,
recent
advances
engineering
local
environments
state‐of‐the‐art
DACs,
for
enhanced
performance
are
highlighted.
Firstly,
various
synthesis
approaches
presented.
Then,
special
attention
is
focused
elucidation
terms
state
coordination
structure.
Furthermore,
a
summary
isolated
applications
thermocatalysis,
electrocatalysis,
photocatalysis
provided.
Finally,
potential
challenges
future
opportunities
this
emerging
This
review
will
pave
way
regulate
microenvironment
site
boosting
processes.
Advanced Materials,
Год журнала:
2023,
Номер
35(35)
Опубликована: Апрель 8, 2023
Guaranteeing
satisfactory
catalytic
behavior
while
ensuring
high
metal
utilization
has
become
the
problem
that
needs
to
be
addressed
when
designing
noble-metal-based
catalysts
for
electrochemical
reactions.
Here,
well-dispersed
ruthenium
(Ru)
based
clusters
with
adjacent
Ru
single
atoms
(SAs)
on
layered
sodium
cobalt
oxide
(Ru/NC)
are
demonstrated
as
a
superb
electrocatalyst
alkaline
HER.
The
Ru/NC
catalyst
demonstrates
an
activity
increase
by
factor
of
two
relative
commercial
Pt/C.
Operando
characterizations
in
conjunction
density
functional
theory
(DFT)
simulations
uncover
origin
superior
and
establish
structure-performance
relationship,
is,
under
HER
condition,
real
active
species
SAs
metallic
supported
NC
substrate.
excellent
can
understood
spatially
decoupled
water
dissociation
hydrogen
desorption
mechanism,
where
substrate
accelerates
rate,
generated
H
intermediates
would
then
migrate
or
recombine
have
H2
evolution.
More
importantly,
comparing
forms
sites,
it
is
cluster
dominates
activity.
Advanced Energy Materials,
Год журнала:
2021,
Номер
12(3)
Опубликована: Дек. 5, 2021
Abstract
Electrochemical
clean
energy
conversion
and
the
production
of
sustainable
chemicals
are
critical
in
journey
to
realizing
a
truly
society.
To
progress
electrochemical
storage
devices
commercialization,
improving
electrocatalyst
performance
cost
utmost
importance.
Research
into
dual‐metal
atom
catalysts
(DACs)
is
rising
prominence
due
advantages
these
sites
over
single‐metal
(SACs),
such
as
breaking
scaling
relationships
for
adsorption
reaction
intermediates
synergistic
effects.
This
review
provides
an
examination
fundamental
theoretical
principles
experimental
DACs
idealized
half
cells,
well
fuel
before
proceeding
analyze
methods
used
producing
identifying
DACs.
Current
challenges
potential
future
research
directions
also
discussed.
Energy & Environmental Science,
Год журнала:
2023,
Номер
16(4), С. 1685 - 1696
Опубликована: Янв. 1, 2023
In
this
work,
we
propose
a
unique
reaction
mechanism
that
the
Fe
site
OOH
serves
as
auxiliary
to
accelerate
formation
of
Co
active
species,
hence
accelerating
rate-determining
step
OER.
Abstract
The
establishment
of
efficient
oxygen
evolution
electrocatalysts
is
great
value
but
also
challenging.
Herein,
a
durable
metal–organic
framework
(MOF)
with
minor
atomically
dispersed
ruthenium
and
an
optimized
electronic
structure
constructed
as
electrocatalyst.
Significantly,
the
obtained
NiRu
0.08
‐MOF
doping
Ru
only
needs
overpotential
187
mV
at
10
mA
cm
−2
Tafel
slop
40
dec
−1
in
0.1
M
KOH
for
reaction,
can
work
continuously
more
than
300
h.
Ultrahigh
mass
activity
achieved,
reaching
56.7
A
g
200
mV,
which
36
times
higher
that
commercial
RuO
2
.
X‐ray
adsorption
spectroscopy
density
function
theory
calculations
reveal
on
metal
sites
MOFs
expected
to
optimize
nickel
sites,
thus
improving
conductivity
catalyst
optimizing
energy
intermediates,
resulting
significant
optimization
electrocatalytic
performance.
This
study
could
provide
new
avenue
design
stable
MOF
electrocatalysts.